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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
<a href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>Contact</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><section><h5>University of Wyoming Honors Program: Laramie, Wyoming</h5><h2>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a></small></h3><h4>May 14, 2019</h4><p>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal - MillironX</title>
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Websites</a></nav></aside><main><section><h5>University of Wyoming Honors Program: Laramie, Wyoming</h5><h2>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a></small></h3><h4>May 14, 2019</h4><p>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture
and mining by utilizing rumen fluid from a cannulated beef cow to generate
hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct
of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop.
@ -13,4 +20,4 @@ of cesium shielded by aluminum. The painted aluminum chassis was obtained from a
previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the
current power source and stopping mechanism.</p><a href=https://doi.org/10.15786/13700938.v1>https://doi.org/10.15786/13700938.v1</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>How to Build a Cow-Cud Fuel Cell - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
<a href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>Contact</a>
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<a href=/videos/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span>Videos</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a></small></h3><h4>August 1, 2018</h4></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>How to Build a Cow-Cud Fuel Cell - MillironX</title>
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Websites</a></nav></aside><main><section><h5>Idaho INBRE Summer Research Conference: Moscow, Idaho</h5><h2>How to Build a Cow-Cud Fuel Cell</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a></small></h3><h4>August 1, 2018</h4></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation - MillironX</title>
<link href=/styles/millironx.min.css rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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Websites</a></nav></aside><main><section><h5>ACS ES&amp;T Engineering</h5><h2>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h2><h3><small><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a></small></h3><h4>September 2, 2022</h4><p>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a></small></h3><h4>September 2, 2022</h4><p>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be
hindered by high contaminant concentrations and acids generated during
remediation. Encapsulating microbes in hydrogels may provide a protective,
tunable environment from inhibiting compounds; however, current approaches to
@ -30,4 +42,4 @@ water fraction within hydrogel matrices and hydrogel contraction. Measured
diffusion rates determined in this study provide first principal design
information to further optimize encapsulating hydrogels for bioremediation.</p><a href=https://doi.org/10.1021/acsestengg.2c00107>https://doi.org/10.1021/acsestengg.2c00107</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/library_hu6756e41dd5621a1e254550fbe815c3a2_204150_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title="Personally, I preferred the Owen Library in Pullman seven miles west"><div class=motto-inside><h1 id=motto>Publications and Presentations</h1></div></div><section><div><blockquote><p>I have spent too long in school and not enough time in the middle of nowhere</p><p>&ndash; Baxter Black, DVM</p></blockquote><p>During my time in academia, I have amassed a few notable accomplishments. Of
course, as the old saying goes, &ldquo;if it isn&rsquo;t published, then it never happened,&rdquo;
so here is a list of everything that actually happened. Several of these
articles are also available on
<a href="https://scholar.google.com/citations?user=gbP4RDgAAAAJ">my Google Scholar page</a>,
but this is the complete list.</p></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tanja Normark</a>
but this is the complete list.</p></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan R. Counts</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tyler Doerksen</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbial electrolysis cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/presentation/ title=Presentation><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M288 0H192V24H168c-48.6.0-88 39.4-88 88v32H24 0v48H24 424h24V144H424 128V112c0-22.1 17.9-40 40-40h24V96h96c26.5.0 48-21.5 48-48S314.5.0 288 0zM48 224 80 512H368l32-288H48z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/how-to-build-a-cow-cud-fuel-cell/><h3>How to Build a Cow-Cud Fuel Cell</h3></a></div><div>01 Aug 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text><strong><small><a href=/academia/how-to-build-a-cow-cud-fuel-cell/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbial Electrolysis Cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
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Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/presentation/ title=Presentation><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M288 0H192V24H168c-48.6.0-88 39.4-88 88v32H24 0v48H24 424h24V144H424 128V112c0-22.1 17.9-40 40-40h24V96h96c26.5.0 48-21.5 48-48S314.5.0 288 0zM48 224 80 512H368l32-288H48z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/how-to-build-a-cow-cud-fuel-cell/><h3>How to Build a Cow-Cud Fuel Cell</h3></a></div><div>01 Aug 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
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Thomas A. Christensen II</a><p class=card-text><strong><small><a href=/academia/how-to-build-a-cow-cud-fuel-cell/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
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Jonathan Counts</a>
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James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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Websites</a></nav></aside><main><section><h5>Westion Section American Society of Animal Science Annual Meeting: Boise, Idaho</h5><h2>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
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Hannah C. Cunningham-Hollinger</a></small></h3><h4>June 12, 2019</h4><p>Early colonization of the rumen microbiome is critical to host health and long
term performance. Factors that influence early colonization include maternal
factors such as gestational nutrition and mode of delivery. Therefore, we
hypothesized that late gestational nutrition and mode of delivery would
@ -40,4 +50,4 @@ susceptible to alteration by maternal factors. These data also suggest that
there may be opportunities to develop management strategies during late
gestation that influence calf health and performance long-term.</p><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf</a>
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Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a></small></h3><h4>October 29, 2018</h4><p>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique
challenges for cleanup because of its water solubility, density, and volatility.
Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE
results in acid generation that inhibits remediating microorganisms. Calcium
@ -28,4 +40,4 @@ hydrogel blends are effective in slowing diffusion of protons, buffering acids
produced by trichloroethylene metabolism, and remains suitable for encapsulation
of microorganisms involved in bioremediation.</p><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf</a>
<iframe src=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf style=width:100%;height:75vh></iframe></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Measuring diffusion of protons in polyvinyalginate - MillironX</title>
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Websites</a></nav></aside><main><section><h5>Idaho INBRE Summer Research Conference: Moscow, Idaho</h5><h2>Measuring diffusion of protons in polyvinyalginate</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Jonathan Counts</a>
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James G. Moberly</a></small></h3><h4>July 31, 2018</h4><p>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents
unique challenges for cleanup because of its density and volatility. Use of
microorganisms may be a promising remediation method, however metabolism of TCE
results in acid buildup, which consequently impedes the ability of
@ -27,4 +36,4 @@ unexpected significant but as of yet unquantified adsorption capacity. These
results suggest that polyvinylalginate is effective in slowing diffusion of
protons and buffering these acids produced by trichloroethylene metabolism, and
remains suitable for encapsulation of microorganisms involved in bioremediation.</p></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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Websites</a></nav></aside><main><section><h5>Veterinary Microbiology</h5><h2>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h2><h3><small><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a></small></h3><h4>April 27, 2022</h4><p>Enteric disease is the predominant cause of morbidity and mortality in young
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a></small></h3><h4>April 27, 2022</h4><p>Enteric disease is the predominant cause of morbidity and mortality in young
mammals including pigs. Viral species involved in porcine enteric disease
complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses
and pestiviruses among others. The virome of three groups of swine samples
@ -35,4 +48,4 @@ phylogenetic update was provided showing a high prevalence of G9 and P[23] RVA
genotypes. These data are important for pathogen surveillance and control
measures</p><a href=https://doi.org/10.1016/j.vetmic.2022.109447>https://doi.org/10.1016/j.vetmic.2022.109447</a>
<iframe src=https://doi.org/10.1016/j.vetmic.2022.109447 style=width:100%;height:75vh></iframe></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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Websites</a></nav></aside><main><section><h5>bioRxiv</h5><h2>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h2><h3><small><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
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Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
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<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a></small></h3><h4>October 23, 2023</h4><p>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline. It is designed for the automated and simultaneous classification and/or profiling of both short- and long-read metagenomic sequencing libraries against a 11 taxonomic classifiers and profilers as well as databases within a single pipeline run. Implemented in Nextflow and as part of the nf-core initiative, the pipeline benefits from high levels of scalability and portability, accommodating from small to extremely large projects on a wide range of computing infrastructure. It has been developed following best-practise software development practises and community support to ensure longevity and adaptability of the pipeline, to help keep it up to date with the field of metagenomics.</p><a href=https://doi.org/10.1101/2023.10.20.563221>https://doi.org/10.1101/2023.10.20.563221</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Maxime Borry</a>
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Mahwash Jamy</a>
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James A. Fellows Yate</a></small></h3><h4>October 23, 2023</h4><p>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline. It is designed for the automated and simultaneous classification and/or profiling of both short- and long-read metagenomic sequencing libraries against a 11 taxonomic classifiers and profilers as well as databases within a single pipeline run. Implemented in Nextflow and as part of the nf-core initiative, the pipeline benefits from high levels of scalability and portability, accommodating from small to extremely large projects on a wide range of computing infrastructure. It has been developed following best-practise software development practises and community support to ensure longevity and adaptability of the pipeline, to help keep it up to date with the field of metagenomics.</p><a href=https://doi.org/10.1101/2023.10.20.563221>https://doi.org/10.1101/2023.10.20.563221</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a></small></h3><h4>August 7, 2020</h4><p>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers - MillironX</title>
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Websites</a></nav></aside><main><section><h5>University of Idaho: Moscow, Idaho</h5><h2>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h2><h3><small><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a></small></h3><h4>August 7, 2020</h4><p>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve
the challenges posed by free proton generation during remediation of
trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In
this thesis, the challenges posed by systems that contain both diffusion and
@ -35,4 +42,4 @@ incorporation of alumina sulfate lowered the reactivity. These results indicate
that polyoxometalate integration into hydrogel membranes is feasible, but does
not provide any advantage to a bioremediation scenario.</p><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>paper - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>paper</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Paper - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Paper</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
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Moritz E. Beber</a>
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Tanja Normark</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan R. Counts</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tyler Doerksen</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>paper on MillironX</title><link>https://millironx.com/categories/paper/</link><description>Recent content in paper on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Mon, 23 Oct 2023 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/paper/index.xml" rel="self" type="application/rss+xml"/><item><title>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</title><link>https://millironx.com/academia/taxprofiler/</link><pubDate>Mon, 23 Oct 2023 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/taxprofiler/</guid><description>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.</description></item><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Paper on MillironX</title><link>https://millironx.com/categories/paper/</link><description>Recent content in Paper on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Mon, 23 Oct 2023 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/paper/index.xml" rel="self" type="application/rss+xml"/><item><title>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</title><link>https://millironx.com/academia/taxprofiler/</link><pubDate>Mon, 23 Oct 2023 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/taxprofiler/</guid><description>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.</description></item><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>poster - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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<a href=/academia/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 144 256 0 512 144v48H0V144zM0 512V464l64-48V224h64V416h40V224h64V416h48V224h64V416h40V224h64V416l64 48v48H0zM256 144a32 32 0 100-64 32 32 0 100 64z"/></svg></span>Academia</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>poster</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Poster</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
<strong><small><a href=/academia/pva-inbre/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>poster on MillironX</title><link>https://millironx.com/categories/poster/</link><description>Recent content in poster on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Wed, 12 Jun 2019 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/poster/index.xml" rel="self" type="application/rss+xml"/><item><title>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</title><link>https://millironx.com/academia/metagenomics/</link><pubDate>Wed, 12 Jun 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/metagenomics/</guid><description>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item><item><title>Measuring diffusion of protons in polyvinyalginate</title><link>https://millironx.com/academia/pva-inbre/</link><pubDate>Tue, 31 Jul 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-inbre/</guid><description>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.</description></item></channel></rss>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>thesis - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a>
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<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbial electrolysis cells</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Thesis - MillironX</title>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbial Electrolysis Cells</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>thesis on MillironX</title><link>https://millironx.com/categories/thesis/</link><description>Recent content in thesis on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 07 Aug 2020 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/thesis/index.xml" rel="self" type="application/rss+xml"/><item><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</title><link>https://millironx.com/academia/thesis/</link><pubDate>Fri, 07 Aug 2020 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/thesis/</guid><description>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.</description></item><item><title>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</title><link>https://millironx.com/academia/cheme-car/</link><pubDate>Tue, 14 May 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/cheme-car/</guid><description>The ChemE Car That Cud showcases Wyoming&amp;rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&amp;rsquo;s mines, to time the car&amp;rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&amp;rsquo;nex toys to adapt to the current power source and stopping mechanism.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Thesis on MillironX</title><link>https://millironx.com/categories/thesis/</link><description>Recent content in Thesis on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 07 Aug 2020 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/thesis/index.xml" rel="self" type="application/rss+xml"/><item><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</title><link>https://millironx.com/academia/thesis/</link><pubDate>Fri, 07 Aug 2020 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/thesis/</guid><description>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.</description></item><item><title>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</title><link>https://millironx.com/academia/cheme-car/</link><pubDate>Tue, 14 May 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/cheme-car/</guid><description>The ChemE Car That Cud showcases Wyoming&amp;rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&amp;rsquo;s mines, to time the car&amp;rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&amp;rsquo;nex toys to adapt to the current power source and stopping mechanism.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>video - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Video - MillironX</title>
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<strong><small><a href=/videos/ag-olympics-reel/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/video/ title=Video><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/videos/if-you-come-out-to-the-fair/thumbnail_hu834e3603c34a0a256fdd826d65f58c0f_231848_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=/videos/if-you-come-out-to-the-fair/><h3>If You Come Out to the Fair</h3></a></div><div>13 Oct 2016</div><p class=card-text>My extension agent asked me to make a promotional video for our county fair. This is the only film of mine that has drawn an emotional response. I think I retired after this.
<strong><small><a href=/videos/if-you-come-out-to-the-fair/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/video/ title=Video><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/videos/in-the-hayfields/thumbnail_hu97c4397bc929e5bdb768d50fcf70af2f_99221_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=/videos/in-the-hayfields/><h3>In The Hayfields</h3></a></div><div>05 Oct 2015</div><p class=card-text>I always get the comment that our implements are old whenever I show this video off. I just ignore the naysayers, though, and good thing, too, because a version of this video won a GoPro Award. Still waiting to see my footage on their channel, though.
<strong><small><a href=/videos/in-the-hayfields/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/video/ title=Video><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/videos/non-verum/thumbnail_hu8c03ad5c4f1b76dafd779c6adec882a7_221237_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=/videos/non-verum/><h3>Non. Verum: The Mystery Killer</h3></a></div><div>12 Jun 2015</div><p class=card-text>My first documentary mockumentary. This film won 2nd place at the 2016 National 4-H Film Festival, and I&rsquo;ve been told that it&rsquo;s more polished than the pieces done by the local TV stations. No one seems to think it&rsquo;s funny, though, so I&rsquo;m not sure how successful it was. Please do me a favor and google every term you don&rsquo;t understand while watching it, and perhaps you&rsquo;ll fare better.
<strong><small><a href=/videos/non-verum/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2017 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>video on MillironX</title><link>https://millironx.com/categories/video/</link><description>Recent content in video on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Thu, 16 Feb 2017 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/video/index.xml" rel="self" type="application/rss+xml"/><item><title>Farm Bureau Ag Olympics Reel</title><link>https://millironx.com/videos/ag-olympics-reel/</link><pubDate>Thu, 16 Feb 2017 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/ag-olympics-reel/</guid><description>The Albany County Farm Bureau Young Farmer&amp;rsquo;s and Rancher&amp;rsquo;s committee asked me to come and shoot a highlight reel of the Ag Olympics booth they ran at the Wyoming Football Wyoming Needs Agriculture Day. I gave away all rights to this one except for bragging rights.</description></item><item><title>If You Come Out to the Fair</title><link>https://millironx.com/videos/if-you-come-out-to-the-fair/</link><pubDate>Thu, 13 Oct 2016 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/if-you-come-out-to-the-fair/</guid><description>My extension agent asked me to make a promotional video for our county fair. This is the only film of mine that has drawn an emotional response. I think I retired after this.</description></item><item><title>In The Hayfields</title><link>https://millironx.com/videos/in-the-hayfields/</link><pubDate>Mon, 05 Oct 2015 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/in-the-hayfields/</guid><description>I always get the comment that our implements are old whenever I show this video off. I just ignore the naysayers, though, and good thing, too, because a version of this video won a GoPro Award. Still waiting to see my footage on their channel, though.</description></item><item><title>Non. Verum: The Mystery Killer</title><link>https://millironx.com/videos/non-verum/</link><pubDate>Fri, 12 Jun 2015 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/non-verum/</guid><description>My first documentary mockumentary. This film won 2nd place at the 2016 National 4-H Film Festival, and I&amp;rsquo;ve been told that it&amp;rsquo;s more polished than the pieces done by the local TV stations. No one seems to think it&amp;rsquo;s funny, though, so I&amp;rsquo;m not sure how successful it was. Please do me a favor and google every term you don&amp;rsquo;t understand while watching it, and perhaps you&amp;rsquo;ll fare better.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Video on MillironX</title><link>https://millironx.com/categories/video/</link><description>Recent content in Video on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Thu, 16 Feb 2017 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/video/index.xml" rel="self" type="application/rss+xml"/><item><title>Farm Bureau Ag Olympics Reel</title><link>https://millironx.com/videos/ag-olympics-reel/</link><pubDate>Thu, 16 Feb 2017 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/ag-olympics-reel/</guid><description>The Albany County Farm Bureau Young Farmer&amp;rsquo;s and Rancher&amp;rsquo;s committee asked me to come and shoot a highlight reel of the Ag Olympics booth they ran at the Wyoming Football Wyoming Needs Agriculture Day. I gave away all rights to this one except for bragging rights.</description></item><item><title>If You Come Out to the Fair</title><link>https://millironx.com/videos/if-you-come-out-to-the-fair/</link><pubDate>Thu, 13 Oct 2016 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/if-you-come-out-to-the-fair/</guid><description>My extension agent asked me to make a promotional video for our county fair. This is the only film of mine that has drawn an emotional response. I think I retired after this.</description></item><item><title>In The Hayfields</title><link>https://millironx.com/videos/in-the-hayfields/</link><pubDate>Mon, 05 Oct 2015 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/in-the-hayfields/</guid><description>I always get the comment that our implements are old whenever I show this video off. I just ignore the naysayers, though, and good thing, too, because a version of this video won a GoPro Award. Still waiting to see my footage on their channel, though.</description></item><item><title>Non. Verum: The Mystery Killer</title><link>https://millironx.com/videos/non-verum/</link><pubDate>Fri, 12 Jun 2015 00:00:00 +0000</pubDate><guid>https://millironx.com/videos/non-verum/</guid><description>My first documentary mockumentary. This film won 2nd place at the 2016 National 4-H Film Festival, and I&amp;rsquo;ve been told that it&amp;rsquo;s more polished than the pieces done by the local TV stations. No one seems to think it&amp;rsquo;s funny, though, so I&amp;rsquo;m not sure how successful it was. Please do me a favor and google every term you don&amp;rsquo;t understand while watching it, and perhaps you&amp;rsquo;ll fare better.</description></item></channel></rss>

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@ -1,9 +1,15 @@
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>web</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/web/ title=Web><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M352 256c0-22.1-2.2-43.5-6.1-64H166.1c-3.9 20.5-6.1 41.9-6.1 64s2.2 43.5 6.1 64H345.9c3.9-20.5 6.1-41.9 6.1-64zm26.4-64c3.6 20.5 5.6 41.9 5.6 64s-2 43.5-5.6 64H503.9c5.3-20.5 8.1-41.9 8.1-64s-2.8-43.5-8.1-64H378.4zm115-32c-33-81.5-106.7-142.2-196-156.7 25.7 36.7 57 91 74 156.7h122zm-155.1.0c-11.4-40.2-28.4-75.9-45.8-105.4-13-21.9-25.9-40-36.5-53.5-10.5 13.5-23.5 31.6-36.5 53.5C202.1 84 185 119.7 173.7 160H338.3zm-197.7.0c17-65.6 48.3-120 74-156.7-89.2 14.5-163 75.2-196 156.7h122zM8.1 192C2.8 212.5.0 233.9.0 256s2.8 43.5 8.1 64H133.6c-3.6-20.5-5.6-41.9-5.6-64s2-43.5 5.6-64H8.1zM173.7 352c11.4 40.2 28.4 75.9 45.8 105.4 13 21.9 25.9 40 36.5 53.5 10.5-13.5 23.5-31.6 36.5-53.5C309.9 428 327 392.3 338.3 352H173.7zm-33.2.0H18.6c33 81.5 106.7 142.2 196 156.7-25.7-36.7-57-91-74-156.7zm352.8.0h-122c-17 65.6-48.3 120-74 156.7 89.2-14.5 163-75.2 196-156.7z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/websites/millironx/thumbnail_hubcf181c388c669c8dc96bb18248e655a_1401448_600x0_resize_box_3.png alt="Thumbnail of thumbnail.png"></div><div class=card-body><div class=card-title><a href=/websites/millironx/><h3>Milliron X</h3></a></div><div>01 Mar 2022</div><p class=card-text>Lo and behold: I made my own website!
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Web - MillironX</title>
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<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>
Home
</a><a href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>
Contact
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Academia
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Videos
</a><a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>
Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Web</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/web/ title=Web><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M352 256c0-22.1-2.2-43.5-6.1-64H166.1c-3.9 20.5-6.1 41.9-6.1 64s2.2 43.5 6.1 64H345.9c3.9-20.5 6.1-41.9 6.1-64zm26.4-64c3.6 20.5 5.6 41.9 5.6 64s-2 43.5-5.6 64H503.9c5.3-20.5 8.1-41.9 8.1-64s-2.8-43.5-8.1-64H378.4zm115-32c-33-81.5-106.7-142.2-196-156.7 25.7 36.7 57 91 74 156.7h122zm-155.1.0c-11.4-40.2-28.4-75.9-45.8-105.4-13-21.9-25.9-40-36.5-53.5-10.5 13.5-23.5 31.6-36.5 53.5C202.1 84 185 119.7 173.7 160H338.3zm-197.7.0c17-65.6 48.3-120 74-156.7-89.2 14.5-163 75.2-196 156.7h122zM8.1 192C2.8 212.5.0 233.9.0 256s2.8 43.5 8.1 64H133.6c-3.6-20.5-5.6-41.9-5.6-64s2-43.5 5.6-64H8.1zM173.7 352c11.4 40.2 28.4 75.9 45.8 105.4 13 21.9 25.9 40 36.5 53.5 10.5-13.5 23.5-31.6 36.5-53.5C309.9 428 327 392.3 338.3 352H173.7zm-33.2.0H18.6c33 81.5 106.7 142.2 196 156.7-25.7-36.7-57-91-74-156.7zm352.8.0h-122c-17 65.6-48.3 120-74 156.7 89.2-14.5 163-75.2 196-156.7z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/websites/millironx/thumbnail_hubcf181c388c669c8dc96bb18248e655a_1401448_600x0_resize_box_3.png alt="Thumbnail of thumbnail.png"></div><div class=card-body><div class=card-title><a href=/websites/millironx/><h3>Milliron X</h3></a></div><div>01 Mar 2022</div><p class=card-text>Lo and behold: I made my own website!
<strong><small><a href=/websites/millironx/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/web/ title=Web><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M352 256c0-22.1-2.2-43.5-6.1-64H166.1c-3.9 20.5-6.1 41.9-6.1 64s2.2 43.5 6.1 64H345.9c3.9-20.5 6.1-41.9 6.1-64zm26.4-64c3.6 20.5 5.6 41.9 5.6 64s-2 43.5-5.6 64H503.9c5.3-20.5 8.1-41.9 8.1-64s-2.8-43.5-8.1-64H378.4zm115-32c-33-81.5-106.7-142.2-196-156.7 25.7 36.7 57 91 74 156.7h122zm-155.1.0c-11.4-40.2-28.4-75.9-45.8-105.4-13-21.9-25.9-40-36.5-53.5-10.5 13.5-23.5 31.6-36.5 53.5C202.1 84 185 119.7 173.7 160H338.3zm-197.7.0c17-65.6 48.3-120 74-156.7-89.2 14.5-163 75.2-196 156.7h122zM8.1 192C2.8 212.5.0 233.9.0 256s2.8 43.5 8.1 64H133.6c-3.6-20.5-5.6-41.9-5.6-64s2-43.5 5.6-64H8.1zM173.7 352c11.4 40.2 28.4 75.9 45.8 105.4 13 21.9 25.9 40 36.5 53.5 10.5-13.5 23.5-31.6 36.5-53.5C309.9 428 327 392.3 338.3 352H173.7zm-33.2.0H18.6c33 81.5 106.7 142.2 196 156.7-25.7-36.7-57-91-74-156.7zm352.8.0h-122c-17 65.6-48.3 120-74 156.7 89.2-14.5 163-75.2 196-156.7z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/websites/record-books/thumbnail_hubee456e49703e4842c3e3b7e624a57f4_430158_600x0_resize_box_3.png alt="Thumbnail of thumbnail.png"></div><div class=card-body><div class=card-title><a href=/websites/record-books/><h3>Albany County 4-H Record Books</h3></a></div><div>10 Aug 2019</div><p class=card-text>I constructed this site to hold the record book helps of the rebellious Albany County, Wyoming. Due to the bureaucratic lag that it takes to update, it got updated just in time for Wyoming 4-H to ditch paper record books entirely. Oh, well.
<strong><small><a href=/websites/record-books/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>web on MillironX</title><link>https://millironx.com/categories/web/</link><description>Recent content in web on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Tue, 01 Mar 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/web/index.xml" rel="self" type="application/rss+xml"/><item><title>Milliron X</title><link>https://millironx.com/websites/millironx/</link><pubDate>Tue, 01 Mar 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/websites/millironx/</guid><description>Lo and behold: I made my own website!</description></item><item><title>Albany County 4-H Record Books</title><link>https://millironx.com/websites/record-books/</link><pubDate>Sat, 10 Aug 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/websites/record-books/</guid><description>I constructed this site to hold the record book helps of the rebellious Albany County, Wyoming. Due to the bureaucratic lag that it takes to update, it got updated just in time for Wyoming 4-H to ditch paper record books entirely. Oh, well.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Web on MillironX</title><link>https://millironx.com/categories/web/</link><description>Recent content in Web on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Tue, 01 Mar 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/categories/web/index.xml" rel="self" type="application/rss+xml"/><item><title>Milliron X</title><link>https://millironx.com/websites/millironx/</link><pubDate>Tue, 01 Mar 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/websites/millironx/</guid><description>Lo and behold: I made my own website!</description></item><item><title>Albany County 4-H Record Books</title><link>https://millironx.com/websites/record-books/</link><pubDate>Sat, 10 Aug 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/websites/record-books/</guid><description>I constructed this site to hold the record book helps of the rebellious Albany County, Wyoming. Due to the bureaucratic lag that it takes to update, it got updated just in time for Wyoming 4-H to ditch paper record books entirely. Oh, well.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><meta name=description content="Contact form to get ahold of me"><title>Contact Me - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
<a class=active href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>Contact</a>
<a href=/academia/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 144 256 0 512 144v48H0V144zM0 512V464l64-48V224h64V416h40V224h64V416h48V224h64V416h40V224h64V416l64 48v48H0zM256 144a32 32 0 100-64 32 32 0 100 64z"/></svg></span>Academia</a>
<a href=/videos/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span>Videos</a>
<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/venice-mailbox_huaca7206bc3a55ef0548c2d4a3e1778c4_598517_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title="This mailbox was used for reporting public health offenses in Venice. It survived the wrath of Napoleon because it didn't look enough like a lion."><div class=motto-inside><h1 id=motto>Contact Me</h1></div></div><section><div><form action=https://usebasin.com/f/787df7bfd22e method=post><fieldset><legend>Contact Me</legend>
<input type=hidden name=_gotcha>
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><meta name=description content="Contact form to get ahold of me"><title>Contact Me - MillironX</title>
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<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>
Home
</a><a class=active href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>
Contact
</a><a href=/academia/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 144 256 0 512 144v48H0V144zM0 512V464l64-48V224h64V416h40V224h64V416h48V224h64V416h40V224h64V416l64 48v48H0zM256 144a32 32 0 100-64 32 32 0 100 64z"/></svg></span>
Academia
</a><a href=/videos/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span>
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</a><a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>
Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/venice-mailbox_huaca7206bc3a55ef0548c2d4a3e1778c4_598517_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title="This mailbox was used for reporting public health offenses in Venice. It survived the wrath of Napoleon because it didn't look enough like a lion."><div class=motto-inside><h1 id=motto>Contact Me</h1></div></div><section><div><form action=https://usebasin.com/f/787df7bfd22e method=post><fieldset><legend>Contact Me</legend><input type=hidden name=_gotcha>
<label for=name>Name</label>
<input type=text class=form-control id=name name=name placeholder="Jay Lush" required>
<label for=email>Email</label>
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@ -1,9 +1,15 @@
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<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a class=active href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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<!doctype html><html class=no-js lang=en><head><meta name=generator content="Hugo 0.126.1"><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><meta name=description content="The homepage of Thomas A. Christensen II"><title>Home - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/charolette_hu3443e2e07cb5f8d9bccf60b0005a6a7f_350799_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title="She almost looks like she's in her native country again."><div class=motto-inside><h1 id=motto><small>My name is Thomas Christensen</small><br>I am Milliron X</h1></div></div><section><div><h2 id=what-is-a-milliron-x>What is a &ldquo;Milliron X&rdquo;?</h2><p>It&rsquo;s a <a href=https://en.wikipedia.org/wiki/Livestock_branding>cattle brand</a>, of
course! My cattle brand!</p><p>The milliron is the bar with a bend in the middle. It does not
represent anything physical or textual <em>per se</em>, and is therefore a rather
unique element in cattle brands. Millirons are difficult to modify into another
@ -15,13 +21,17 @@ works: authenticity, originality, power, depth, and prestige.</p><h2 id=who-am-i
<a href=https://www.guymccutcheon.com/>Guy McCutcheon Photography</a></small></figcaption></figure><p>I am</p><ul><li>🧬 A bioinformatician (by profession)</li><li>📐 An engineer (by education)</li><li>🐂 A rancher (by lifestyle)</li><li>🖥️ A techie (self-taught)</li><li>🎥 And a filmmaker (at heart)</li></ul><p>I&rsquo;ve got a soft spot for Brown Swiss dairy cows (just in case you couldn&rsquo;t tell
by the pictures), and am sometimes called &ldquo;one of those crazy, Wyoming dairy cow
people.&rdquo; I love anything to do with cattle or technology, but especially
anything to do with both of them.</p><p><em>&lt;abbr
title=&ldquo;Born again, fundamentalist, dispensationalist, King James Bible-believing, independent Baptist&rdquo;
>Christian, American, Convervative, Pro-gun, Heterosexual - any questions?</em></p><h2 id=where-am-i>Where am I?</h2><figure class=float-left><img class=img-fluid src=/wy-in-ks_hudc7807e3bcd929cdfa1bf6a15cff914e_370962_768x0_resize_box_3.png width=768 height=499></figure><p>I am a Wyomingite sojurning in Kansas. That ought to lead to some interesting
stories.</p><p>Around the web you can find me at (in order of subjective importance)</p><ul><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 496 512"><path d="M165.9 397.4c0 2-2.3 3.6-5.2 3.6-3.3.3-5.6-1.3-5.6-3.6.0-2 2.3-3.6 5.2-3.6 3-.3 5.6 1.3 5.6 3.6zm-31.1-4.5c-.7 2 1.3 4.3 4.3 4.9 2.6 1 5.6.0 6.2-2s-1.3-4.3-4.3-5.2c-2.6-.7-5.5.3-6.2 2.3zm44.2-1.7c-2.9.7-4.9 2.6-4.6 4.9.3 2 2.9 3.3 5.9 2.6 2.9-.7 4.9-2.6 4.6-4.6-.3-1.9-3-3.2-5.9-2.9zM244.8 8C106.1 8 0 113.3.0 252c0 110.9 69.8 205.8 169.5 239.2 12.8 2.3 17.3-5.6 17.3-12.1.0-6.2-.3-40.4-.3-61.4.0.0-70 15-84.7-29.8.0.0-11.4-29.1-27.8-36.6.0.0-22.9-15.7 1.6-15.4.0.0 24.9 2 38.6 25.8 21.9 38.6 58.6 27.5 72.9 20.9 2.3-16 8.8-27.1 16-33.7-55.9-6.2-112.3-14.3-112.3-110.5.0-27.5 7.6-41.3 23.6-58.9-2.6-6.5-11.1-33.3 2.6-67.9 20.9-6.5 69 27 69 27 20-5.6 41.5-8.5 62.8-8.5s42.8 2.9 62.8 8.5c0 0 48.1-33.6 69-27 13.7 34.7 5.2 61.4 2.6 67.9 16 17.7 25.8 31.5 25.8 58.9.0 96.5-58.9 104.2-114.8 110.5 9.2 7.9 17 22.9 17 46.4.0 33.7-.3 75.4-.3 83.6.0 6.5 4.6 14.4 17.3 12.1C428.2 457.8 496 362.9 496 252 496 113.3 383.5 8 244.8 8zM97.2 352.9c-1.3 1-1 3.3.7 5.2 1.6 1.6 3.9 2.3 5.2 1 1.3-1 1-3.3-.7-5.2-1.6-1.6-3.9-2.3-5.2-1zm-10.8-8.1c-.7 1.3.3 2.9 2.3 3.9 1.6 1 3.6.7 4.3-.7.7-1.3-.3-2.9-2.3-3.9-2-.6-3.6-.3-4.3.7zm32.4 35.6c-1.6 1.3-1 4.3 1.3 6.2 2.3 2.3 5.2 2.6 6.5 1 1.3-1.3.7-4.3-1.3-6.2-2.2-2.3-5.2-2.6-6.5-1zm-11.4-14.7c-1.6 1-1.6 3.6.0 5.9 1.6 2.3 4.3 3.3 5.6 2.3 1.6-1.3 1.6-3.9.0-6.2-1.4-2.3-4-3.3-5.6-2z"/></svg></span>GitHub: <a href=https://github.com/MillironX>@MillironX</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M294.75 188.19h-45.92V342h47.47c67.62.0 83.12-51.34 83.12-76.91.0-41.64-26.54-76.9-84.67-76.9zM256 8C119 8 8 119 8 256s111 248 248 248 248-111 248-248S393 8 256 8zm-80.79 360.76h-29.84v-207.5h29.84zm-14.92-231.14a19.57 19.57.0 1119.57-19.57 19.64 19.64.0 01-19.57 19.57zM3e2 369h-81V161.26h80.6c76.73.0 110.44 54.83 110.44 103.85C410 318.39 368.38 369 3e2 369z"/></svg></span>ORDiD:
<a href=https://orcid.org/0000-0003-1219-9320>0000-0003-1219-9320</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M503.5 204.6 502.8 202.8 433.1 21.02C431.7 17.45 429.2 14.43 425.9 12.38 423.5 10.83 420.8 9.865 417.9 9.57 415 9.275 412.2 9.653 409.5 10.68 406.8 11.7 404.4 13.34 402.4 15.46 400.5 17.58 399.1 20.13 398.3 22.9l-47 144H160.8l-47.1-144C112.9 20.13 111.5 17.59 109.6 15.47 107.6 13.35 105.2 11.72 102.5 10.7c-2.64-1.025-5.52-1.405-8.38-1.113C91.26 9.878 88.51 10.83 86.08 12.38c-3.24 2.05-5.75 5.07-7.16 8.64L9.267 202.8 8.543 204.6c-10.027 26.2-11.263 55-3.52 82 7.747 26.9 24.047 50.7 46.447 67.6L51.74 354.4 52.33 354.8 158.3 434.3 210.9 474l32 24.2C246.6 500.1 251.2 502.5 255.9 502.5S265.2 500.1 268.9 498.2l32-24.2 52.6-39.7 106.7-79.9L460.5 354.1c22.4-16.9 38.7-40.6 45.6-67.5C514.7 259.6 513.5 230.8 503.5 204.6z"/></svg></span>GitLab: <a href=https://gitlab.com/MillironX>@MillironX</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M403.2 32H44.8C20.1 32 0 52.1.0 76.8v358.4C0 459.9 20.1 480 44.8 480h358.4c24.7.0 44.8-20.1 44.8-44.8V76.8c0-24.7-20.1-44.8-44.8-44.8zM377 180.8c-1.4 31.5-23.4 74.7-66 129.4-44 57.2-81.3 85.8-111.7 85.8-18.9.0-34.8-17.4-47.9-52.3-25.5-93.3-36.4-148-57.4-148-2.4.0-10.9 5.1-25.4 15.2l-15.2-19.6c37.3-32.8 72.9-69.2 95.2-71.2 25.2-2.4 40.7 14.8 46.5 51.7 20.7 131.2 29.9 151 67.6 91.6 13.5-21.4 20.8-37.7 21.8-48.9 3.5-33.2-25.9-30.9-45.8-22.4 15.9-52.1 46.3-77.4 91.2-76 33.3.9 49 22.5 47.1 64.7z"/></svg></span>Vimeo:
<a href=https://vimeo.com/tchristensenii>Thomas Christensen II</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 384 512"><path d="M290.7 311 95 269.7 86.8 309l195.7 41zm51-87L188.2 95.7l-25.5 30.8 153.5 128.3zm-31.2 39.7L129.2 179l-16.7 36.5L293.7 3e2zM262 32l-32 24 119.3 160.3 32-24zm20.5 328h-2e2v39.7h2e2zm39.7 80H42.7V320h-40v160h359.5V320h-40z"/></svg></span>StackExchange:
<a href=https://stackexchange.com/users/4863541/milliron-x>Milliron X</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 496 512"><path d="M496 256c0 137-111.2 248-248.4 248-113.8.0-209.6-76.3-239-180.4l95.2 39.3c6.4 32.1 34.9 56.4 68.9 56.4 39.2.0 71.9-32.4 70.2-73.5l84.5-60.2c52.1 1.3 95.8-40.9 95.8-93.5.0-51.6-42-93.5-93.7-93.5s-93.7 42-93.7 93.5v1.2L176.6 279c-15.5-.9-30.7 3.4-43.5 12.1L0 236.1C10.2 108.4 117.1 8 247.6 8 384.8 8 496 119 496 256zM155.7 384.3l-30.5-12.6a52.79 52.79.0 0027.2 25.8c26.9 11.2 57.8-1.6 69-28.4 5.4-13 5.5-27.3.1-40.3S206 305.6 193 300.2c-12.9-5.4-26.7-5.2-38.9-.6l31.5 13c19.8 8.2 29.2 30.9 20.9 50.7-8.3 19.9-31 29.2-50.8 21zm173.8-129.9c-34.4.0-62.4-28-62.4-62.3s28-62.3 62.4-62.3 62.4 28 62.4 62.3-27.9 62.3-62.4 62.3zm.1-15.6c25.9.0 46.9-21 46.9-46.8.0-25.9-21-46.8-46.9-46.8s-46.9 21-46.9 46.8c.1 25.8 21.1 46.8 46.9 46.8z"/></svg></span>Steam: <a href=https://steamcommunity.com/id/millironx>MillironX</a></li></ul><p>This list is intended to verify my identity on other sites. Please do <em>not</em> use
anything to do with both of them.</p><p><em>Christian, American, Convervative, Pro-gun, Heterosexual - any questions?</em></p><h2 id=where-am-i>Where am I?</h2><figure class=float-left><img class=img-fluid src=/wy-in-ks_hudc7807e3bcd929cdfa1bf6a15cff914e_370962_768x0_resize_box_3.png width=768 height=499></figure><p>I am a Wyomingite sojurning in Kansas. That ought to lead to some interesting
stories.</p><p>Around the web you can find me at (in order of subjective importance)</p><ul><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 496 512"><path d="M165.9 397.4c0 2-2.3 3.6-5.2 3.6-3.3.3-5.6-1.3-5.6-3.6.0-2 2.3-3.6 5.2-3.6 3-.3 5.6 1.3 5.6 3.6zm-31.1-4.5c-.7 2 1.3 4.3 4.3 4.9 2.6 1 5.6.0 6.2-2s-1.3-4.3-4.3-5.2c-2.6-.7-5.5.3-6.2 2.3zm44.2-1.7c-2.9.7-4.9 2.6-4.6 4.9.3 2 2.9 3.3 5.9 2.6 2.9-.7 4.9-2.6 4.6-4.6-.3-1.9-3-3.2-5.9-2.9zM244.8 8C106.1 8 0 113.3.0 252c0 110.9 69.8 205.8 169.5 239.2 12.8 2.3 17.3-5.6 17.3-12.1.0-6.2-.3-40.4-.3-61.4.0.0-70 15-84.7-29.8.0.0-11.4-29.1-27.8-36.6.0.0-22.9-15.7 1.6-15.4.0.0 24.9 2 38.6 25.8 21.9 38.6 58.6 27.5 72.9 20.9 2.3-16 8.8-27.1 16-33.7-55.9-6.2-112.3-14.3-112.3-110.5.0-27.5 7.6-41.3 23.6-58.9-2.6-6.5-11.1-33.3 2.6-67.9 20.9-6.5 69 27 69 27 20-5.6 41.5-8.5 62.8-8.5s42.8 2.9 62.8 8.5c0 0 48.1-33.6 69-27 13.7 34.7 5.2 61.4 2.6 67.9 16 17.7 25.8 31.5 25.8 58.9.0 96.5-58.9 104.2-114.8 110.5 9.2 7.9 17 22.9 17 46.4.0 33.7-.3 75.4-.3 83.6.0 6.5 4.6 14.4 17.3 12.1C428.2 457.8 496 362.9 496 252 496 113.3 383.5 8 244.8 8zM97.2 352.9c-1.3 1-1 3.3.7 5.2 1.6 1.6 3.9 2.3 5.2 1 1.3-1 1-3.3-.7-5.2-1.6-1.6-3.9-2.3-5.2-1zm-10.8-8.1c-.7 1.3.3 2.9 2.3 3.9 1.6 1 3.6.7 4.3-.7.7-1.3-.3-2.9-2.3-3.9-2-.6-3.6-.3-4.3.7zm32.4 35.6c-1.6 1.3-1 4.3 1.3 6.2 2.3 2.3 5.2 2.6 6.5 1 1.3-1.3.7-4.3-1.3-6.2-2.2-2.3-5.2-2.6-6.5-1zm-11.4-14.7c-1.6 1-1.6 3.6.0 5.9 1.6 2.3 4.3 3.3 5.6 2.3 1.6-1.3 1.6-3.9.0-6.2-1.4-2.3-4-3.3-5.6-2z"/></svg></span>
GitHub: <a href=https://github.com/MillironX>@MillironX</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M294.75 188.19h-45.92V342h47.47c67.62.0 83.12-51.34 83.12-76.91.0-41.64-26.54-76.9-84.67-76.9zM256 8C119 8 8 119 8 256s111 248 248 248 248-111 248-248S393 8 256 8zm-80.79 360.76h-29.84v-207.5h29.84zm-14.92-231.14a19.57 19.57.0 1119.57-19.57 19.64 19.64.0 01-19.57 19.57zM3e2 369h-81V161.26h80.6c76.73.0 110.44 54.83 110.44 103.85C410 318.39 368.38 369 3e2 369z"/></svg></span>
ORDiD:
<a href=https://orcid.org/0000-0003-1219-9320>0000-0003-1219-9320</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M503.5 204.6 502.8 202.8 433.1 21.02C431.7 17.45 429.2 14.43 425.9 12.38 423.5 10.83 420.8 9.865 417.9 9.57 415 9.275 412.2 9.653 409.5 10.68 406.8 11.7 404.4 13.34 402.4 15.46 400.5 17.58 399.1 20.13 398.3 22.9l-47 144H160.8l-47.1-144C112.9 20.13 111.5 17.59 109.6 15.47 107.6 13.35 105.2 11.72 102.5 10.7c-2.64-1.025-5.52-1.405-8.38-1.113C91.26 9.878 88.51 10.83 86.08 12.38c-3.24 2.05-5.75 5.07-7.16 8.64L9.267 202.8 8.543 204.6c-10.027 26.2-11.263 55-3.52 82 7.747 26.9 24.047 50.7 46.447 67.6L51.74 354.4 52.33 354.8 158.3 434.3 210.9 474l32 24.2C246.6 500.1 251.2 502.5 255.9 502.5S265.2 500.1 268.9 498.2l32-24.2 52.6-39.7 106.7-79.9L460.5 354.1c22.4-16.9 38.7-40.6 45.6-67.5C514.7 259.6 513.5 230.8 503.5 204.6z"/></svg></span>
GitLab: <a href=https://gitlab.com/MillironX>@MillironX</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M403.2 32H44.8C20.1 32 0 52.1.0 76.8v358.4C0 459.9 20.1 480 44.8 480h358.4c24.7.0 44.8-20.1 44.8-44.8V76.8c0-24.7-20.1-44.8-44.8-44.8zM377 180.8c-1.4 31.5-23.4 74.7-66 129.4-44 57.2-81.3 85.8-111.7 85.8-18.9.0-34.8-17.4-47.9-52.3-25.5-93.3-36.4-148-57.4-148-2.4.0-10.9 5.1-25.4 15.2l-15.2-19.6c37.3-32.8 72.9-69.2 95.2-71.2 25.2-2.4 40.7 14.8 46.5 51.7 20.7 131.2 29.9 151 67.6 91.6 13.5-21.4 20.8-37.7 21.8-48.9 3.5-33.2-25.9-30.9-45.8-22.4 15.9-52.1 46.3-77.4 91.2-76 33.3.9 49 22.5 47.1 64.7z"/></svg></span>
Vimeo:
<a href=https://vimeo.com/tchristensenii>Thomas Christensen II</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 384 512"><path d="M290.7 311 95 269.7 86.8 309l195.7 41zm51-87L188.2 95.7l-25.5 30.8 153.5 128.3zm-31.2 39.7L129.2 179l-16.7 36.5L293.7 3e2zM262 32l-32 24 119.3 160.3 32-24zm20.5 328h-2e2v39.7h2e2zm39.7 80H42.7V320h-40v160h359.5V320h-40z"/></svg></span>
StackExchange:
<a href=https://stackexchange.com/users/4863541/milliron-x>Milliron X</a></li><li><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 496 512"><path d="M496 256c0 137-111.2 248-248.4 248-113.8.0-209.6-76.3-239-180.4l95.2 39.3c6.4 32.1 34.9 56.4 68.9 56.4 39.2.0 71.9-32.4 70.2-73.5l84.5-60.2c52.1 1.3 95.8-40.9 95.8-93.5.0-51.6-42-93.5-93.7-93.5s-93.7 42-93.7 93.5v1.2L176.6 279c-15.5-.9-30.7 3.4-43.5 12.1L0 236.1C10.2 108.4 117.1 8 247.6 8 384.8 8 496 119 496 256zM155.7 384.3l-30.5-12.6a52.79 52.79.0 0027.2 25.8c26.9 11.2 57.8-1.6 69-28.4 5.4-13 5.5-27.3.1-40.3S206 305.6 193 300.2c-12.9-5.4-26.7-5.2-38.9-.6l31.5 13c19.8 8.2 29.2 30.9 20.9 50.7-8.3 19.9-31 29.2-50.8 21zm173.8-129.9c-34.4.0-62.4-28-62.4-62.3s28-62.3 62.4-62.3 62.4 28 62.4 62.3-27.9 62.3-62.4 62.3zm.1-15.6c25.9.0 46.9-21 46.9-46.8.0-25.9-21-46.8-46.9-46.8s-46.9 21-46.9 46.8c.1 25.8 21.1 46.8 46.9 46.8z"/></svg></span>
Steam: <a href=https://steamcommunity.com/id/millironx>MillironX</a></li></ul><p>This list is intended to verify my identity on other sites. Please do <em>not</em> use
it as fodder to try and &ldquo;follow&rdquo; me on each of these platforms. I stand with
RMS:</p><blockquote>Facebook is a bad place for a person to be. When people find us on Facebook, we
lead them away from Facebook and then talk with them elsewhere.<br><small>Richard Stallman <em>in</em> <a href=https://stallman.org/facebook-presence.html>If you feel your organization needs a &lsquo;presence&rsquo; in Facebook</a></small></blockquote><p>I typically don&rsquo;t respond to inquiries made on these platforms. Please use
@ -30,7 +40,7 @@ lead them away from Facebook and then talk with them elsewhere.<br><small>Richar
During my time in academia, I have amassed a few notable accomplishments. Of course, as the old saying goes, &ldquo;if it isn&rsquo;t published, then it never happened,&rdquo; so here is a list of everything that actually happened. Several of these articles are also available on my Google Scholar page, but this is the complete list.
<strong><small><a href=/academia/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><div class=card-header><div class=thumb-icon-wrapper><span class=thumb-icon-badge><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span></span></div></div><div class=card-body><div class=card-title><a href=/contact/><h3>Contact Me</h3></a></div><div>01 Jul 2023</div><p class=card-text>Contact Me Name Email Phone number Subject Message Cancel Submit
<strong><small><a href=/contact/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><div class=card-header><div class=thumb-icon-wrapper><span class=thumb-icon-badge><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span></span></div></div><div class=card-body><div class=card-title><a href=/websites/><h3>My Websites</h3></a></div><div>01 Mar 2022</div><p class=card-text>I do occasionally build websites for myself and other people. Here is a list of websites I have contributed code to directly, in a vain attempt to gain each of them some search engine cred.
<strong><small><a href=/websites/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><div class=card-header><div class=thumb-icon-wrapper><span class=thumb-icon-badge><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span></span></div></div><div class=card-body><div class=card-title><a href=/videos/><h3>Videos</h3></a></div><div>16 Feb 2017</div><p class=card-text>The culmination of all art forms is that of film. A good film must have the plot and language of a good novel, characters as bold and stunning as sculpture, a rhythm as driving and delicate as poetry, frame compositions more stellar that those of photography, and music that speaks to the souls of both the characters on screen and the viewers off.
<strong><small><a href=/websites/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><div class=card-body><div class=card-title><a href=/posts/><h3>Posts</h3></a></div><div>13 Jan 2022</div><p class=card-text><strong><small><a href=/posts/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><div class=card-header><div class=thumb-icon-wrapper><span class=thumb-icon-badge><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M384 64H0V448H384V64zM576 448V64L416 174.9V337.1L576 448z"/></svg></span></span></div></div><div class=card-body><div class=card-title><a href=/videos/><h3>Videos</h3></a></div><div>16 Feb 2017</div><p class=card-text>The culmination of all art forms is that of film. A good film must have the plot and language of a good novel, characters as bold and stunning as sculpture, a rhythm as driving and delicate as poetry, frame compositions more stellar that those of photography, and music that speaks to the souls of both the characters on screen and the viewers off.
But I digress. Most of my forays into the world of film are immortalized on my Peertube channel, but I decided to share a few highlights here.
<strong><small><a href=/videos/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Andrea Lu - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Andrea Lu</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tyler Doerksen</a>
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Andrea Lu - MillironX</title>
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Home
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Andrea Lu</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
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Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
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Porcine Enteric Disease</a>
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Virome</a>
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Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Andrea Lu on MillironX</title><link>https://millironx.com/people/andrea-lu/</link><description>Recent content in Andrea Lu on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/andrea-lu/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Andrea Lu on MillironX</title><link>https://millironx.com/people/andrea-lu/</link><description>Recent content in Andrea Lu on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/andrea-lu/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Carson J. Silsby - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Carson J. Silsby</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Carson J. Silsby on MillironX</title><link>https://millironx.com/people/carson-j.-silsby/</link><description>Recent content in Carson J. Silsby on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/carson-j.-silsby/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Carson J. Silsby on MillironX</title><link>https://millironx.com/people/carson-j.-silsby/</link><description>Recent content in Carson J. Silsby on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/carson-j.-silsby/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Hannah C. Cunningham-Hollinger - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Hannah C. Cunningham-Hollinger</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>metagenomics</a>
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<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Hannah C. Cunningham-Hollinger - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Hannah C. Cunningham-Hollinger</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
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Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
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Metagenomics</a>
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Microbiome</a>
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Rumen</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>James A. Fellows Yate - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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Sofia Stamouli</a>
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Moritz E. Beber</a>
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Tanja Normark</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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Maxime Borry</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>James G. Moberly</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Carson J. Silsby</a>
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Carson J. Silsby</a>
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Jonathan R. Counts</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
<strong><small><a href=/academia/pva-inbre/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>James G. Moberly on MillironX</title><link>https://millironx.com/people/james-g.-moberly/</link><description>Recent content in James G. Moberly on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/james-g.-moberly/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item><item><title>Measuring diffusion of protons in polyvinyalginate</title><link>https://millironx.com/academia/pva-inbre/</link><pubDate>Tue, 31 Jul 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-inbre/</guid><description>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>James G. Moberly on MillironX</title><link>https://millironx.com/people/james-g.-moberly/</link><description>Recent content in James G. Moberly on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/james-g.-moberly/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item><item><title>Measuring diffusion of protons in polyvinyalginate</title><link>https://millironx.com/academia/pva-inbre/</link><pubDate>Tue, 31 Jul 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-inbre/</guid><description>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Jamie Henningson - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Jamie Henningson</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tyler Doerksen</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Jamie Henningson</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Jianfa Bai - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
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Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
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Virome</a>
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Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Jonathan Counts - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Jonathan Counts</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
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<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Jonathan Counts</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
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Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
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Kristopher v. Waynant</a>
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James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
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Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
<strong><small><a href=/academia/pva-inbre/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Jonathan R. Counts</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
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Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
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Polymers</a>
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Transport Properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Kathy J. Austin - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
<a href=/contact/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M224 0H0V512H384V427l-1.7 1.7-120.1 17.2-11.7 1.9-11.6 1.9-5.3-10.5L222.1 416H209.9l-11.6 23.2-4.4 8.8H184h-8-11.9l-3.4-11.4L144 381l-16.7 55.6L123.9 448H112 80 64V416H80h20.1l20.6-68.6 3.4-11.4H136h16 11.9l3.4 11.4 15.4 51.4 3-5.9 4.4-8.8H2e2h32 9.9l4.4 8.8 7.2 14.5 13.5-94 117-117V160H224V0zm32 0V128H384L256 0zM505 119.8l-41.3 41.3 71 71L576 190.8l-71-71zm-63.9 63.9L299.9 325 288 407.9 370.9 396 512.1 254.7l-71-71z"/></svg></span>Contact</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Kathy J. Austin</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbiome</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Kathy J. Austin - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Kathy J. Austin</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Kathy J. Austin</a>
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Kristi M. Cammack</a>
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Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
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Metagenomics</a>
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Microbiome</a>
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Rumen</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Kristi M. Cammack - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Kristi M. Cammack - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Kristi M. Cammack</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Kathy J. Austin</a>
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Kristi M. Cammack</a>
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Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
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Metagenomics</a>
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Microbiome</a>
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Rumen</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan R. Counts</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Kristopher v. Waynant</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
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Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Kristopher V. Waynant on MillironX</title><link>https://millironx.com/people/kristopher-v.-waynant/</link><description>Recent content in Kristopher V. Waynant on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/kristopher-v.-waynant/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Kristopher v. Waynant on MillironX</title><link>https://millironx.com/people/kristopher-v.-waynant/</link><description>Recent content in Kristopher v. Waynant on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/kristopher-v.-waynant/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>

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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Lance Noll</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Lance Noll on MillironX</title><link>https://millironx.com/people/lance-noll/</link><description>Recent content in Lance Noll on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/lance-noll/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Lance Noll on MillironX</title><link>https://millironx.com/people/lance-noll/</link><description>Recent content in Lance Noll on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/lance-noll/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Lili Andersson-Li - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Lili Andersson-Li - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Lili Andersson-Li</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Lili Andersson-Li on MillironX</title><link>https://millironx.com/people/lili-andersson-li/</link><description>Recent content in Lili Andersson-Li on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Mon, 23 Oct 2023 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/lili-andersson-li/index.xml" rel="self" type="application/rss+xml"/><item><title>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</title><link>https://millironx.com/academia/taxprofiler/</link><pubDate>Mon, 23 Oct 2023 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/taxprofiler/</guid><description>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.</description></item></channel></rss>
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Sofia Stamouli</a>
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Moritz E. Beber</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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Maxime Borry</a>
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Mahwash Jamy</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Mark F. Roll - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Mark F. Roll</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Maxime Borry</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tanja Normark</a>
<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Maxime Borry - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Maxime Borry</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
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Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Moritz E. Beber - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Moritz E. Beber</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tanja Normark</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Moritz E. Beber</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>nf-core community - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>nf-core community</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Nf-Core Community - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Nf-Core Community</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
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Nf-Core Community</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Rachel Palinski - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Rachel Palinski - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Rachel Palinski</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
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Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Rachel Palinski on MillironX</title><link>https://millironx.com/people/rachel-palinski/</link><description>Recent content in Rachel Palinski on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/rachel-palinski/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Rachel Palinski on MillironX</title><link>https://millironx.com/people/rachel-palinski/</link><description>Recent content in Rachel Palinski on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/rachel-palinski/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Samuel R. Wolfe - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
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<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
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<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Samuel R. Wolfe - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Samuel R. Wolfe</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2018 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Samuel R. Wolfe on MillironX</title><link>https://millironx.com/people/samuel-r.-wolfe/</link><description>Recent content in Samuel R. Wolfe on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Mon, 29 Oct 2018 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/samuel-r.-wolfe/index.xml" rel="self" type="application/rss+xml"/><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>
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Sofia Stamouli</a>
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Moritz E. Beber</a>
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Tanja Normark</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
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<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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Maxime Borry</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Tanja Normark - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Tanja Normark</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Thomas A. Christensen II</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tanja Normark</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Thomas A. Christensen II</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
<a href=/people/tanja-normark/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan R. Counts</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Nf-Core Community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Tyler Doerksen</a>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbial electrolysis cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/presentation/ title=Presentation><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M288 0H192V24H168c-48.6.0-88 39.4-88 88v32H24 0v48H24 424h24V144H424 128V112c0-22.1 17.9-40 40-40h24V96h96c26.5.0 48-21.5 48-48S314.5.0 288 0zM48 224 80 512H368l32-288H48z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/how-to-build-a-cow-cud-fuel-cell/><h3>How to Build a Cow-Cud Fuel Cell</h3></a></div><div>01 Aug 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text><strong><small><a href=/academia/how-to-build-a-cow-cud-fuel-cell/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Enteric Disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rotavirus</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Metagenomics</a>
<a href=/tags/microbiome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbiome</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbial Electrolysis Cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/presentation/ title=Presentation><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M288 0H192V24H168c-48.6.0-88 39.4-88 88v32H24 0v48H24 424h24V144H424 128V112c0-22.1 17.9-40 40-40h24V96h96c26.5.0 48-21.5 48-48S314.5.0 288 0zM48 224 80 512H368l32-288H48z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/how-to-build-a-cow-cud-fuel-cell/><h3>How to Build a Cow-Cud Fuel Cell</h3></a></div><div>01 Aug 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text><strong><small><a href=/academia/how-to-build-a-cow-cud-fuel-cell/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-inbre/><h3>Measuring diffusion of protons in polyvinyalginate</h3></a></div><div>31 Jul 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE) is a toxic and carcinogenic contaminant that presents unique challenges for cleanup because of its density and volatility. Use of microorganisms may be a promising remediation method, however metabolism of TCE results in acid buildup, which consequently impedes the ability of microorganisms to perform this remediation. Polyvinylalginate (PVA) shows promise as a useful shield for microorganisms carrying out bioremediation of TCE by surrounding them in a protective biofilm-like layer, however, key information is missing which relates diffusion of TCE or its metabolic products through PVA.
<strong><small><a href=/academia/pva-inbre/>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Tyler Doerksen - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Tyler Doerksen</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1016/j.vetmic.2022.109447><h3>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</h3></a></div><div>27 Apr 2022</div><a href=/people/tyler-doerksen/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Tyler Doerksen</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/andrea-lu/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Andrea Lu</a>
<a href=/people/lance-noll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lance Noll</a>
<a href=/people/jianfa-bai/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jianfa Bai</a>
<a href=/people/jamie-henningson/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jamie Henningson</a>
<a href=/people/rachel-palinski/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine rotavirus</a>
<a href=/tags/porcine-enteric-disease/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>porcine enteric disease</a>
<a href=/tags/virome/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>virome</a>
<a href=/tags/rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Andrea Lu</a>
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Lance Noll</a>
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Jianfa Bai</a>
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Jamie Henningson</a>
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Rachel Palinski</a><p class=card-text>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.
<strong><small><a href=https://doi.org/10.1016/j.vetmic.2022.109447>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/porcine-rotavirus/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Porcine Rotavirus</a>
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Porcine Enteric Disease</a>
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Virome</a>
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Rotavirus</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Tyler Doerksen on MillironX</title><link>https://millironx.com/people/tyler-doerksen/</link><description>Recent content in Tyler Doerksen on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Wed, 27 Apr 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/people/tyler-doerksen/index.xml" rel="self" type="application/rss+xml"/><item><title>Assessment of Porcine Rotavirus-associated virome variations in pigs with enteric disease</title><link>https://millironx.com/academia/rotavirus-virome/</link><pubDate>Wed, 27 Apr 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/rotavirus-virome/</guid><description>Enteric disease is the predominant cause of morbidity and mortality in young mammals including pigs. Viral species involved in porcine enteric disease complex (PEDC) include rotaviruses, coronaviruses, picornaviruses, astroviruses and pestiviruses among others. The virome of three groups of swine samples submitted to the Kansas State University Veterinary Diagnostic Laboratory for routine testing were assessed, namely, a Rotavirus A positive (RVA) group, a Rotavirus co-infection (RV) group and a Rotavirus Negative (RV Neg) group.</description></item></channel></rss>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>AIChE - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a>
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AIChE</a>
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Radiation</a>
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Rumen</a>
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Microbial Electrolysis Cells</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>bioremediation - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>bioremediation</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Bioremediation - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Bioremediation</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>bioremediation on MillironX</title><link>https://millironx.com/tags/bioremediation/</link><description>Recent content in bioremediation on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 07 Aug 2020 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/bioremediation/index.xml" rel="self" type="application/rss+xml"/><item><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</title><link>https://millironx.com/academia/thesis/</link><pubDate>Fri, 07 Aug 2020 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/thesis/</guid><description>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>chemical engineering - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
<img src=/graphics/millironx.svg alt="Milliron X"></object><h1 class=font-small-caps>Milliron X</h1></header><div class=row><aside><nav><a href=/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M511.8 287.6H576V240L288.4.0.0 240v47.6H64.1V512H224V352H352V512H512.8l-1-224.4z"/></svg></span>Home</a>
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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>chemical engineering</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>microbial electrolysis cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Chemical Engineering</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-header><img class=img-thumbnail src=/academia/cheme-car/thumbnail_hua27ceb9f6c1a8b01057b70de792ffbc6_1566619_600x0_resize_q75_box.jpg alt="Thumbnail of thumbnail.jpg"></div><div class=card-body><div class=card-title><a href=https://doi.org/10.15786/13700938.v1><h3>The ChemE Car that Cud: AIChE ChemE Car Engineering Design Proposal</h3></a></div><div>14 May 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>The ChemE Car That Cud showcases Wyoming&rsquo;s dominant industries of agriculture and mining by utilizing rumen fluid from a cannulated beef cow to generate hydrogen to be used in a hydrogen fuel cell and radioactive cesium, a byproduct of uranium that is often obtained from Wyoming&rsquo;s mines, to time the car&rsquo;s stop. The concentration of cesium-137 source is measured using the radioactive decay of cesium shielded by aluminum. The painted aluminum chassis was obtained from a previous team at UW, and modified using plastic k&rsquo;nex toys to adapt to the current power source and stopping mechanism.
<strong><small><a href=https://doi.org/10.15786/13700938.v1>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a>
<a href=/tags/aiche/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
AIChE</a>
<a href=/tags/radiation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Radiation</a>
<a href=/tags/rumen/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Rumen</a>
<a href=/tags/microbial-electrolysis-cells/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Microbial Electrolysis Cells</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<a href=/websites/><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 512 512"><path d="M0 32H512V480H0V32zm160 72v48H448V104H160zm-32-8H64v64h64V96z"/></svg></span>Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>diffusion</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan R. Counts</a>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Diffusion</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
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Polymers</a>
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Transport Properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
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<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Moritz E. Beber</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Genomics - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Genomics</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1101/2023.10.20.563221><h3>nf-core/taxprofiler: highly parallelised and flexible pipeline for metagenomic taxonomic classification and profiling</h3></a></div><div>23 Oct 2023</div><a href=/people/sofia-stamouli/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Sofia Stamouli</a>
<a href=/people/moritz-e.-beber/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Moritz E. Beber</a>
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Tanja Normark</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/lili-andersson-li/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mahwash Jamy</a>
<a href=/people/nf-core-community/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>nf-core community</a>
<a href=/people/james-a.-fellows-yate/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
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Lili Andersson-Li</a>
<a href=/people/maxime-borry/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Maxime Borry</a>
<a href=/people/mahwash-jamy/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mahwash Jamy</a>
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Nf-Core Community</a>
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James A. Fellows Yate</a><p class=card-text>Metagenomic classification tackles the problem of characterising the taxonomic source of all DNA sequencing reads in a sample. A common approach to address the differences and biases between the many different taxonomic classification tools is to run metagenomic data through multiple classification tools and databases. This, however, is a very time-consuming task when performed manually - particularly when combined with the appropriate preprocessing of sequencing reads before the classification. Here we present nf-core/taxprofiler, a highly parallelised read-processing and taxonomic classification pipeline.
<strong><small><a href=https://doi.org/10.1101/2023.10.20.563221>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/genomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Genomics</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2023 Thomas A. Christensen II<br>Licensed
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>gestation - MillironX</title><link href="/styles/millironx.min.css" rel=stylesheet></head><body><header><object data=/graphics/millironx.svg>
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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>gestation</a>
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<!doctype html><html class=no-js lang=en><head><meta charset=utf-8><meta http-equiv=x-ua-compatible content="ie=edge"><meta name=viewport content="width=device-width,initial-scale=1"><title>Gestation - MillironX</title>
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Gestation</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf><h3>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</h3></a></div><div>12 Jun 2019</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/kathy-j.-austin/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kathy J. Austin</a>
<a href=/people/kristi-m.-cammack/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristi M. Cammack</a>
<a href=/people/hannah-c.-cunningham-hollinger/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Hannah C. Cunningham-Hollinger</a><p class=card-text>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.
<strong><small><a href=/academia/metagenomics/metagenomics_analysis_of_rumen_populations.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/gestation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Gestation</a>
<a href=/tags/metagenomics/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Metagenomics</a>
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Microbiome</a>
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Rumen</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2019 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>gestation on MillironX</title><link>https://millironx.com/tags/gestation/</link><description>Recent content in gestation on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Wed, 12 Jun 2019 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/gestation/index.xml" rel="self" type="application/rss+xml"/><item><title>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</title><link>https://millironx.com/academia/metagenomics/</link><pubDate>Wed, 12 Jun 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/metagenomics/</guid><description>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Gestation on MillironX</title><link>https://millironx.com/tags/gestation/</link><description>Recent content in Gestation on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Wed, 12 Jun 2019 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/gestation/index.xml" rel="self" type="application/rss+xml"/><item><title>Metagenomic analysis of rumen populations in week-old calves as altered by maternal late gestational nutrition and mode of delivery</title><link>https://millironx.com/academia/metagenomics/</link><pubDate>Wed, 12 Jun 2019 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/metagenomics/</guid><description>Early colonization of the rumen microbiome is critical to host health and long term performance. Factors that influence early colonization include maternal factors such as gestational nutrition and mode of delivery. Therefore, we hypothesized that late gestational nutrition and mode of delivery would influence the calf rumen microbiome. Our objectives were to determine if nutrient restriction during late gestation alters the calf rumen microbiome and determine if ruminal microbiome composition differs in calves born vaginally versus caesarean.</description></item></channel></rss>

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bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogel polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>proton transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>chemical engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Hydrogel Polymers</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/thesis/ title=Thesis><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 640 512"><path d="M640 176 320 288 127.8 220.7l198.1-77.8 14.9-5.9L329 107.3l-14.9 5.9-224 88-8.7 3.4L80 204V346.8c15.4 25.1 27.8 68.4.0 133.2L0 464s32.5-46.5 48-96.9V192.8L0 176V144L320 32 640 144v32zM143.6 260.2l165.9 58.1 10.6 3.7 10.6-3.7 165.9-58.1L512 408c0 35.3-86 72-192 72s-192-36.7-192-72l15.6-147.8z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2><h3>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</h3></a></div><div>07 Aug 2020</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a><p class=card-text>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.
<strong><small><a href=https://www.proquest.com/dissertations-theses/polyoxometalate-incorporation-effects-on-proton/docview/2502214356/se-2>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div><div class=card><a class=category-button href=/categories/poster/ title=Poster><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 576 512"><path d="M32 0H0V64H32V320v32H64 256v34.7l-54.6 54.6L178.7 464 224 509.3l22.6-22.6L288 445.3l41.4 41.4L352 509.3 397.3 464l-22.6-22.6L320 386.7V352H512h32V320 64h32V0H544 480 96 32zM96 64H480V288H320 256 96V64z"/></svg></span></a><div class=card-body><div class=card-title><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf><h3>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h3></a></div><div>29 Oct 2018</div><a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/samuel-r.-wolfe/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Samuel R. Wolfe</a>
<a href=/people/jonathan-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan Counts</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.
<strong><small><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/bioremediation/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Bioremediation</a>
<a href=/tags/polyoxometalate/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polyoxometalate</a>
<a href=/tags/hydrogel-polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogel Polymers</a>
<a href=/tags/proton-transport/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Proton Transport</a>
<a href=/tags/chemical-engineering/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Chemical Engineering</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2020 Thomas A. Christensen II<br>Licensed
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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>hydrogel polymers on MillironX</title><link>https://millironx.com/tags/hydrogel-polymers/</link><description>Recent content in hydrogel polymers on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 07 Aug 2020 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/hydrogel-polymers/index.xml" rel="self" type="application/rss+xml"/><item><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</title><link>https://millironx.com/academia/thesis/</link><pubDate>Fri, 07 Aug 2020 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/thesis/</guid><description>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Hydrogel Polymers on MillironX</title><link>https://millironx.com/tags/hydrogel-polymers/</link><description>Recent content in Hydrogel Polymers on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 07 Aug 2020 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/hydrogel-polymers/index.xml" rel="self" type="application/rss+xml"/><item><title>Polyoxometalate Incorporation and Effects on Proton Transport in Hydrogel Polymers</title><link>https://millironx.com/academia/thesis/</link><pubDate>Fri, 07 Aug 2020 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/thesis/</guid><description>Polyoxometalate clusters embedded into hydrogel biobeads may be able to solve the challenges posed by free proton generation during remediation of trichloroethylene by acting as buffers and reducing protons to hydrogen gas. In this thesis, the challenges posed by systems that contain both diffusion and reaction processes for protons are considered mathematically, and a computer simulation to was developed to prove the relationship between diaphragm cell lag period and reactive capabilities of membranes.</description></item><item><title>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</title><link>https://millironx.com/academia/pva-aiche/</link><pubDate>Mon, 29 Oct 2018 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/pva-aiche/</guid><description>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique challenges for cleanup because of its water solubility, density, and volatility. Bioremediation of TCE is a promising cleanup method; however, metabolism of TCE results in acid generation that inhibits remediating microorganisms. Calcium alginate(CA)-polyvinylalcohol (PVA) hydrogels show promise for protecting remediating microbes, however diffusion of TCE or its byproducts through these polymers is unknown. To measure the effective diffusion coefficient of TCE and byproducts through hydrogel membranes, we used a modified diaphragm cell.</description></item></channel></rss>

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Websites</a></nav></aside><main><style>.motto::before{background-image:url(/images/saddles_hu1143faa57f5b1acd11a97eda612b56ee_388130_6000x2000_fill_q75_box_center.jpg)}</style><div class=motto title><div class=motto-inside><h1 id=motto>Hydrogels</h1></div></div><section><div></div><div class=card><a class=category-button href=/categories/paper/ title=Paper><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M96 0C43 0 0 43 0 96V416c0 53 43 96 96 96H384h32 32V448H416V384h32V0H416 384 96zm0 384H352v64H96c-17.7.0-32-14.3-32-32s14.3-32 32-32zm32-256H352v32H128V128zm224 64v32H128V192H352z"/></svg></span></a><div class=card-body><div class=card-title><a href=https://doi.org/10.1021/acsestengg.2c00107><h3>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</h3></a></div><div>02 Sep 2022</div><a href=/people/carson-j.-silsby/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Carson J. Silsby</a>
<a href=/people/jonathan-r.-counts/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Jonathan R. Counts</a>
<a href=/people/thomas-a.-christensen-ii/ class="card-link
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>Kristopher V. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>ionic strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>transport properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.111.3</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>
bolder"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Thomas A. Christensen II</a>
<a href=/people/mark-f.-roll/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Mark F. Roll</a>
<a href=/people/kristopher-v.-waynant/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
Kristopher v. Waynant</a>
<a href=/people/james-g.-moberly/ class=card-link><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M224 256A128 128 0 10224 0a128 128 0 100 256zM448 512 384 304H64L0 512H448z"/></svg></span>
James G. Moberly</a><p class=card-text>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.
<strong><small><a href=https://doi.org/10.1021/acsestengg.2c00107>Read&nbsp;more&nbsp;&#187;</a></small></strong></p><div class=card-footer><a href=/tags/diffusion/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Diffusion</a>
<a href=/tags/hydrogels/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Hydrogels</a>
<a href=/tags/ionic-strength/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Ionic Strength</a>
<a href=/tags/polymers/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Polymers</a>
<a href=/tags/transport-properties/ class="icon-link card-link"><span class="fa-container fa-fw"><svg xmlns="http://www.w3.org/2000/svg" viewBox="0 0 448 512"><path d="M0 32V256L224 480 448 256 224 32H0zm112 80a32 32 0 110 64 32 32 0 110-64z"/></svg></span>
Transport Properties</a></div></div></div></section></main></div><footer><img src=/graphics/brandedbull.min.svg height=95rem><p>&copy; 2022 Thomas A. Christensen II<br>Licensed
<a rel=license href=http://creativecommons.org/licenses/by/4.0/>CC-BY 4.0</a><br>Built with <a href=https://gohugo.io>Hugo</a> v0.126.1</p></footer><script data-goatcounter=https://millironx.goatcounter.com/count async src=//gc.zgo.at/count.js></script></body></html>

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<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>hydrogels on MillironX</title><link>https://millironx.com/tags/hydrogels/</link><description>Recent content in hydrogels on MillironX</description><generator>Hugo -- gohugo.io</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/hydrogels/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item></channel></rss>
<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Hydrogels on MillironX</title><link>https://millironx.com/tags/hydrogels/</link><description>Recent content in Hydrogels on MillironX</description><generator>Hugo</generator><language>en-us</language><lastBuildDate>Fri, 02 Sep 2022 00:00:00 +0000</lastBuildDate><atom:link href="https://millironx.com/tags/hydrogels/index.xml" rel="self" type="application/rss+xml"/><item><title>Investigation of Hydronium Diffusion in Poly(vinyl alcohol) Hydrogels: A Critical First Step to Describe Acid Transport for Encapsulated Bioremediation</title><link>https://millironx.com/academia/hydronium-pva/</link><pubDate>Fri, 02 Sep 2022 00:00:00 +0000</pubDate><guid>https://millironx.com/academia/hydronium-pva/</guid><description>Bioremediation of chlorinated aliphatic hydrocarbon-contaminated aquifers can be hindered by high contaminant concentrations and acids generated during remediation. Encapsulating microbes in hydrogels may provide a protective, tunable environment from inhibiting compounds; however, current approaches to formulate successful encapsulated systems rely on trial and error rather than engineering approaches because fundamental information on mass-transfer coefficients is lacking. To address this knowledge gap, hydronium ion mass-transfer rates through two commonly used hydrogel materials, poly(vinyl alcohol) and alginic acid, under two solidification methods (chemical and cryogenic) were measured.</description></item></channel></rss>

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