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Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents

Environmental monitoring and remediation often requires the collection of harmful substances from aqueous solutions. Absorption with solids is a useful technique for binding such substances even at very low concentration levels. Many of these contaminants are weak acids or bases. Some novel, nonioni...

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Autores principales: Becskereki, Gergely, Horvai, George, Tóth, Blanka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371215/
https://www.ncbi.nlm.nih.gov/pubmed/35956682
http://dx.doi.org/10.3390/polym14153167
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author Becskereki, Gergely
Horvai, George
Tóth, Blanka
author_facet Becskereki, Gergely
Horvai, George
Tóth, Blanka
author_sort Becskereki, Gergely
collection PubMed
description Environmental monitoring and remediation often requires the collection of harmful substances from aqueous solutions. Absorption with solids is a useful technique for binding such substances even at very low concentration levels. Many of these contaminants are weak acids or bases. Some novel, nonionic polymeric sorbents, such as hypercrosslinked polymers or polymers with balanced hydrophilic-lipophilic properties (HLB) have been found to bind weak acids and bases with high distribution coefficients even at pH values where these compounds are almost completely ionized (typically near pH 7). To understand this phenomenon and its practical consequences, we have experimentally studied the adsorption of ionizable weak acids and bases as a function of pH and ionic strength on a the OASIS(®) HLB sorbent. Not surprisingly, the ionic forms of the weak acids and bases were found to be much less bound in the aqueous solution than their neutral forms. In spite of this, OASIS(®) HLB binds weak acids and bases around pH 7 considerably better than typical hydrophobic sorbents. The high overall distribution coefficients around pH 7 could be explained by two factors. One is that on OASIS(®) HLB, and on some other novel polymeric sorbents, the binding constant of the moderately hydrophobic neutral form is on the order of 100,000, i.e., much higher than on typical hydrophobic sorbents. Thus, even if the proportion of the neutral form in solution is only around 1% near pH 7, the adsorption of the neutral form is still significant. On the other hand, the binding of the apparently hydrophilic ionized forms occurs with distribution coefficients well above 100. The distribution coefficient of the ionic form appears to depend on ionic strength and the presence of competing ions. Adsorption of the ionic forms is found to be very similar to the adsorption of ionic surfactants. The pH dependence of the total adsorption of neutral and ionic forms together, is found to be steep around pH 7, and therefore the varying pH of natural waters may strongly influence the binding efficiency in practical applications, such as the collection (concentration) of contaminants or their passive sampling.
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spelling pubmed-93712152022-08-12 Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents Becskereki, Gergely Horvai, George Tóth, Blanka Polymers (Basel) Article Environmental monitoring and remediation often requires the collection of harmful substances from aqueous solutions. Absorption with solids is a useful technique for binding such substances even at very low concentration levels. Many of these contaminants are weak acids or bases. Some novel, nonionic polymeric sorbents, such as hypercrosslinked polymers or polymers with balanced hydrophilic-lipophilic properties (HLB) have been found to bind weak acids and bases with high distribution coefficients even at pH values where these compounds are almost completely ionized (typically near pH 7). To understand this phenomenon and its practical consequences, we have experimentally studied the adsorption of ionizable weak acids and bases as a function of pH and ionic strength on a the OASIS(®) HLB sorbent. Not surprisingly, the ionic forms of the weak acids and bases were found to be much less bound in the aqueous solution than their neutral forms. In spite of this, OASIS(®) HLB binds weak acids and bases around pH 7 considerably better than typical hydrophobic sorbents. The high overall distribution coefficients around pH 7 could be explained by two factors. One is that on OASIS(®) HLB, and on some other novel polymeric sorbents, the binding constant of the moderately hydrophobic neutral form is on the order of 100,000, i.e., much higher than on typical hydrophobic sorbents. Thus, even if the proportion of the neutral form in solution is only around 1% near pH 7, the adsorption of the neutral form is still significant. On the other hand, the binding of the apparently hydrophilic ionized forms occurs with distribution coefficients well above 100. The distribution coefficient of the ionic form appears to depend on ionic strength and the presence of competing ions. Adsorption of the ionic forms is found to be very similar to the adsorption of ionic surfactants. The pH dependence of the total adsorption of neutral and ionic forms together, is found to be steep around pH 7, and therefore the varying pH of natural waters may strongly influence the binding efficiency in practical applications, such as the collection (concentration) of contaminants or their passive sampling. MDPI 2022-08-03 /pmc/articles/PMC9371215/ /pubmed/35956682 http://dx.doi.org/10.3390/polym14153167 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Becskereki, Gergely
Horvai, George
Tóth, Blanka
Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title_full Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title_fullStr Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title_full_unstemmed Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title_short Adsorption of Hydrophobic Ions on Environmentally Relevant Sorbents
title_sort adsorption of hydrophobic ions on environmentally relevant sorbents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371215/
https://www.ncbi.nlm.nih.gov/pubmed/35956682
http://dx.doi.org/10.3390/polym14153167
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