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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 Trichlorethylene Breakdown Products in Polyvinylalginate - MillironX</title><link href="/styles/mix-twbs.min.css" rel=stylesheet></head><body><div class=container-fluid><div class="row wrapper min-vh-100 flex-column flex-sm-row"><aside class="col-12 col-md-3 p-0 bg-dark flex-shrink-1"><nav class="navbar navbar-expand-md navbar-dark bg-dark align-items-start flex-md-column flex-row"><div class=container-fluid><a class="navbar-brand d-block d-md-none" href=#><object class="d-inline-block align-text-top" width=80 height=24 style=filter:invert(100%) data=/graphics/millironx.svg>
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&emsp; Milliron X</h1></header></div><section class="container-fluid list-main"><div class="container px-5"><h5>AIChE Annual Meeting: Pittsburgh, Pennsylvania</h5><h2>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</h2><h3><small><ul class=list-inline></ul></small></h3><h4>October 29, 2018</h4><p>Trichloroethylene (TCE), a toxic and carcinogenic contaminant, presents unique
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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.
Measured effective diffusion coefficient of each species was (cm <sup>2</sup>
/s
× 10<sup>6</sup>
): 14.0 ± 1.91 for H<sup>+</sup>
ions, 12.4 ± 1.64 for TCE,
7.83 ± 0.54 for cis-1,2-dichloroethylene (DCE), and 4.68 ± 4.14 for vinyl
chloride. These results aid in engineering biobeads and suggest that CA-PVA
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><div class="card border-dark m-3 p-3"><a href=/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf>/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf</a>
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purpose.</p></div><div class="tab-pane fade p-3" id=debug role=tabpanel><dl><dt>awards</dt><dd>[3rd Place Environmental III Division Undergraduate Poster Competition]</dd><dt>cardimage</dt><dd>library</dd><dt>categories</dt><dd>[poster]</dd><dt>date</dt><dd>2018-10-29 00:00:00 +0000 UTC</dd><dt>draft</dt><dd>false</dd><dt>featured</dt><dd>false</dd><dt>iscjklanguage</dt><dd>false</dd><dt>journal</dt><dd>AIChE Annual Meeting</dd><dt>lastmod</dt><dd>2018-10-29 00:00:00 +0000 UTC</dd><dt>link</dt><dd>/academia/pva-aiche/measuring_diffusion_of_trichloroethylene.pdf</dd><dt>location</dt><dd>Pittsburgh, Pennsylvania</dd><dt>people</dt><dd>[Thomas A. Christensen II Samuel R. Wolfe Jonathan Counts Mark F. Roll Kristopher V. Waynant James G. Moberly]</dd><dt>publishdate</dt><dd>2018-10-29 00:00:00 +0000 UTC</dd><dt>tags</dt><dd>[bioremediation polyoxometalate hydrogel polymers proton transport chemical engineering]</dd><dt>title</dt><dd>Measuring Diffusion of Trichlorethylene Breakdown Products in Polyvinylalginate</dd></dl></div></div></div></div></div></div></body></html>