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Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns

The removal of arsenate ions from aqueous solutions at near-neutral pH was carried out using chitosan-magnetite (ChM) hydrogel beads in batch systems. Equilibrium isotherms and kinetic studies are reported. Obtained equilibrium and kinetic data were fitted to mathematical models, estimating model pa...

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Autores principales: Verduzco-Navarro, Ilse Paulina, Mendizábal, Eduardo, Rivera Mayorga, José Antonio, Rentería-Urquiza, Maite, Gonzalez-Alvarez, Alejandro, Rios-Donato, Nely
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954141/
https://www.ncbi.nlm.nih.gov/pubmed/35323299
http://dx.doi.org/10.3390/gels8030186
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author Verduzco-Navarro, Ilse Paulina
Mendizábal, Eduardo
Rivera Mayorga, José Antonio
Rentería-Urquiza, Maite
Gonzalez-Alvarez, Alejandro
Rios-Donato, Nely
author_facet Verduzco-Navarro, Ilse Paulina
Mendizábal, Eduardo
Rivera Mayorga, José Antonio
Rentería-Urquiza, Maite
Gonzalez-Alvarez, Alejandro
Rios-Donato, Nely
author_sort Verduzco-Navarro, Ilse Paulina
collection PubMed
description The removal of arsenate ions from aqueous solutions at near-neutral pH was carried out using chitosan-magnetite (ChM) hydrogel beads in batch systems. Equilibrium isotherms and kinetic studies are reported. Obtained equilibrium and kinetic data were fitted to mathematical models, estimating model parameters by non-linear regression analysis. Langmuir model was found to best fit equilibrium data; a maximum adsorption capacity of 66.9 mg As/g was estimated at pH 7.0. Pseudo-first order kinetic model was observed to best fit kinetic data. The pH of the solution was observed to increase with increasing contact time, which is attributed to protonation of amine groups present in the hydrogel. Protonation of functional groups in the ChM sorbent yields a higher number of active sites for arsenate removal, being as this a process that can’t be overlooked in future applications of ChM hydrogel for the removal or arsenate ions. Chitosan-magnetite and ChM-arsenate interactions were determined by XPS. Arsenate removal using fixed-bed column packed with ChM was carried out, reporting a non-ideal behavior attributed to pH increase of the effluent caused by proton transfer to ChM hydrogels.
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spelling pubmed-89541412022-03-26 Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns Verduzco-Navarro, Ilse Paulina Mendizábal, Eduardo Rivera Mayorga, José Antonio Rentería-Urquiza, Maite Gonzalez-Alvarez, Alejandro Rios-Donato, Nely Gels Article The removal of arsenate ions from aqueous solutions at near-neutral pH was carried out using chitosan-magnetite (ChM) hydrogel beads in batch systems. Equilibrium isotherms and kinetic studies are reported. Obtained equilibrium and kinetic data were fitted to mathematical models, estimating model parameters by non-linear regression analysis. Langmuir model was found to best fit equilibrium data; a maximum adsorption capacity of 66.9 mg As/g was estimated at pH 7.0. Pseudo-first order kinetic model was observed to best fit kinetic data. The pH of the solution was observed to increase with increasing contact time, which is attributed to protonation of amine groups present in the hydrogel. Protonation of functional groups in the ChM sorbent yields a higher number of active sites for arsenate removal, being as this a process that can’t be overlooked in future applications of ChM hydrogel for the removal or arsenate ions. Chitosan-magnetite and ChM-arsenate interactions were determined by XPS. Arsenate removal using fixed-bed column packed with ChM was carried out, reporting a non-ideal behavior attributed to pH increase of the effluent caused by proton transfer to ChM hydrogels. MDPI 2022-03-17 /pmc/articles/PMC8954141/ /pubmed/35323299 http://dx.doi.org/10.3390/gels8030186 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
Verduzco-Navarro, Ilse Paulina
Mendizábal, Eduardo
Rivera Mayorga, José Antonio
Rentería-Urquiza, Maite
Gonzalez-Alvarez, Alejandro
Rios-Donato, Nely
Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title_full Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title_fullStr Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title_full_unstemmed Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title_short Arsenate Removal from Aqueous Media Using Chitosan-Magnetite Hydrogel by Batch and Fixed-Bed Columns
title_sort arsenate removal from aqueous media using chitosan-magnetite hydrogel by batch and fixed-bed columns
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954141/
https://www.ncbi.nlm.nih.gov/pubmed/35323299
http://dx.doi.org/10.3390/gels8030186
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