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	<title>diffusion coefficient Archives - One Earth - One Ocean e. V.</title>
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	<title>diffusion coefficient Archives - One Earth - One Ocean e. V.</title>
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	<item>
		<title>Desorption modeling of hydrophobic organic chemicals from plastic sheets using experimentally determined diffusion coefficients in plastics</title>
		<link>https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics-2/</link>
		
		<dc:creator><![CDATA[Birgit Westermayr]]></dc:creator>
		<pubDate>Tue, 22 Sep 2020 15:18:55 +0000</pubDate>
				<category><![CDATA[INTERNATIONAL MARINE LITTER DATABASE]]></category>
		<category><![CDATA[bioavailability]]></category>
		<category><![CDATA[biot number]]></category>
		<category><![CDATA[diffusion coefficient]]></category>
		<category><![CDATA[partition coefficient]]></category>
		<category><![CDATA[Polyethylene]]></category>
		<category><![CDATA[polypropylene]]></category>
		<guid isPermaLink="false">https://oneearth-oneocean.com/?p=7959</guid>

					<description><![CDATA[<p>Hwang Lee, Da-Eun Byun, Ju Min Kim, Jung-Hwan Kwon, Desorption modeling of hydrophobic organic chemicals from plastic sheets using experimentally determined diffusion coefficients in plastics, Marine Pollution Bulletin,Volume 126, 2018, Pages 312-317, ISSN 0025-326X, Abstract: To evaluate rate of migration from plastic debris, desorption of model hydrophobic organic chemicals (HOCs) from polyethylene (PE)/polypropylene (PP) films to water was measured using PE/PP films homogeneously loaded with the HOCs. The HOCs fractions remaining in the PE/PP films were compared with those predicted using a model characterized by the mass transfer Biot number. The experimental data agreed with the model simulation, indicating that HOCs desorption from plastic particles can generally be described by the model. For hexachlorocyclohexanes with lower plastic-water partition coefficients, desorption was dominated by diffusion in the plastic film, whereas desorption of chlorinated benzenes with higher partition coefficients was determined by diffusion in the aqueous boundary layer. Evaluation of the fraction of HOCs remaining in plastic films with respect to film thickness and desorption time showed that the partition coefficient between plastic and water is the most important parameter influencing the desorption half-life. https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&#38;pid=1-s2.0-S0025326X1730989X-main.pdf https://doi.org/10.1016/j.marpolbul.2017.11.032.(http://www.sciencedirect.com/science/article/pii/S0025326X1730989X) https://drive.google.com/open?id=1ykdsS5Rmh7N1AHkGbjxJuZTV5DCwDlp9</p>
<p>The post <a href="https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics-2/">Desorption modeling of hydrophobic organic chemicals from plastic sheets using experimentally determined diffusion coefficients in plastics</a> appeared first on <a href="https://oneearth-oneocean.com">One Earth - One Ocean e. V.</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>Hwang Lee, Da-Eun Byun, Ju Min Kim, Jung-Hwan Kwon,</p>
<p>Desorption modeling of hydrophobic organic chemicals from plastic sheets using experimentally determined diffusion coefficients in plastics,</p>
<p>Marine Pollution Bulletin,Volume 126, 2018, Pages 312-317, ISSN 0025-326X,</p>
<p>Abstract:</p>
<p>To evaluate rate of migration from plastic debris, desorption<br />
of model hydrophobic organic chemicals (HOCs) from polyethylene<br />
(PE)/polypropylene (PP) films to water was measured using PE/PP films<br />
homogeneously loaded with the HOCs. The HOCs fractions remaining in the<br />
PE/PP films were compared with those predicted using a model<br />
characterized by the mass transfer Biot number. The experimental data<br />
agreed with the model simulation, indicating that HOCs desorption from<br />
plastic particles can generally be described by the model. For<br />
hexachlorocyclohexanes with lower plastic-water partition coefficients,<br />
desorption was dominated by diffusion in the plastic film, whereas<br />
desorption of chlorinated benzenes with higher partition coefficients<br />
was determined by diffusion in the aqueous boundary layer. Evaluation of<br />
the fraction of HOCs remaining in plastic films with respect to film<br />
thickness and desorption time showed that the partition coefficient<br />
between plastic and water is the most important parameter influencing<br />
the desorption half-life.</p>
<p><a href="https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&amp;pid=1-s2.0-S0025326X1730989X-main.pdf">https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&amp;pid=1-s2.0-S0025326X1730989X-main.pdf</a></p>
<p>https://doi.org/10.1016/j.marpolbul.2017.11.032.(http://www.sciencedirect.com/science/article/pii/S0025326X1730989X)</p>
<p><a href="https://drive.google.com/open?id=1ykdsS5Rmh7N1AHkGbjxJuZTV5DCwDlp9">https://drive.google.com/open?id=1ykdsS5Rmh7N1AHkGbjxJuZTV5DCwDlp9</a></p>
<p>The post <a href="https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics-2/">Desorption modeling of hydrophobic organic chemicals from plastic sheets using experimentally determined diffusion coefficients in plastics</a> appeared first on <a href="https://oneearth-oneocean.com">One Earth - One Ocean e. V.</a>.</p>
]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Desorption modeling of hydrophobic organic chemicals from plastic sheets  using experimentally determined diffusion coefficients in plastics</title>
		<link>https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics/</link>
		
		<dc:creator><![CDATA[Birgit Westermayr]]></dc:creator>
		<pubDate>Wed, 02 Sep 2020 12:49:08 +0000</pubDate>
				<category><![CDATA[INTERNATIONAL MARINE LITTER DATABASE]]></category>
		<category><![CDATA[bioavailability]]></category>
		<category><![CDATA[biot number]]></category>
		<category><![CDATA[diffusion coefficient]]></category>
		<category><![CDATA[partition coefficient]]></category>
		<category><![CDATA[Polyethylene]]></category>
		<category><![CDATA[polypropylene]]></category>
		<guid isPermaLink="false">https://oneearth-oneocean.com/?p=7880</guid>

					<description><![CDATA[<p>Hwang Lee, Da-Eun Byun, Ju Min Kim, Jung-Hwan Kwon, Marine Pollution Bulletin, Volume 126, 2018, Pages 312-317, ISSN 0025-326X, Abstract: To evaluate rate of migration from plastic debris, desorption of model hydrophobic organic chemicals (HOCs) from polyethylene (PE)/polypropylene (PP) films to water was measured using PE/PP films homogeneously loaded with the HOCs. The HOCs fractions remaining in the PE/PP films were compared with those predicted using a model characterized by the mass transfer Biot number. The experimental data agreed with the model simulation, indicating that HOCs desorption from plastic particles can generally be described by the model. For hexachlorocyclohexanes with lower plastic-water partition coefficients, desorption was dominated by diffusion in the plastic film, whereas desorption of chlorinated benzenes with higher partition coefficients was determined by diffusion in the aqueous boundary layer. Evaluation of the fraction of HOCs remaining in plastic films with respect to film thickness and desorption time showed that the partition coefficient between plastic and water is the most important parameter influencing the desorption half-life. https://doi.org/10.1016/j.marpolbul.2017.11.032.(http://www.sciencedirect.com/science/article/pii/S0025326X1730989X) https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&#38;pid=1-s2.0-S0025326X1730989X-main.pdf</p>
<p>The post <a href="https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics/">Desorption modeling of hydrophobic organic chemicals from plastic sheets  using experimentally determined diffusion coefficients in plastics</a> appeared first on <a href="https://oneearth-oneocean.com">One Earth - One Ocean e. V.</a>.</p>
]]></description>
										<content:encoded><![CDATA[<p>Hwang Lee, Da-Eun Byun, Ju Min Kim, Jung-Hwan Kwon,</p>
<p>Marine Pollution Bulletin, Volume 126, 2018, Pages 312-317, ISSN 0025-326X,</p>
<p>Abstract:</p>
<p>To evaluate rate of migration from plastic debris, desorption of model hydrophobic organic chemicals (HOCs) from polyethylene<br />
(PE)/polypropylene (PP) films to water was measured using PE/PP films homogeneously loaded with the HOCs. The HOCs fractions remaining in the PE/PP films were compared with those predicted using a model characterized by the mass transfer Biot number. The experimental data agreed with the model simulation, indicating that HOCs desorption from plastic particles can generally be described by the model.<br />
For hexachlorocyclohexanes with lower plastic-water partition coefficients, desorption was dominated by diffusion in the plastic film, whereas desorption of chlorinated benzenes with higher partition coefficients was determined by diffusion in the aqueous boundary layer.</p>
<p>Evaluation of the fraction of HOCs remaining in plastic films with respect to film thickness and desorption time showed that the partition coefficient between plastic and water is the most important parameter influencing the desorption half-life.</p>
<p>https://doi.org/10.1016/j.marpolbul.2017.11.032.(http://www.sciencedirect.com/science/article/pii/S0025326X1730989X)</p>
<p><a href="https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&amp;pid=1-s2.0-S0025326X1730989X-main.pdf">https://www.sciencedirect.com/science/article/pii/S0025326X1730989X/pdfft?md5=f5ebb209e983577bbc4953f1a01c24cc&amp;pid=1-s2.0-S0025326X1730989X-main.pdf</a></p>
<p>The post <a href="https://oneearth-oneocean.com/international-marine-litter-database/2020/desorption-modeling-of-hydrophobic-organic-chemicals-from-plastic-sheets-using-experimentally-determined-diffusion-coefficients-in-plastics/">Desorption modeling of hydrophobic organic chemicals from plastic sheets  using experimentally determined diffusion coefficients in plastics</a> appeared first on <a href="https://oneearth-oneocean.com">One Earth - One Ocean e. V.</a>.</p>
]]></content:encoded>
					
		
		
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