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Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal

Dye and heavy metal contaminants are mainly aquatic pollutants. Although many materials and methods have been developed to remove these pollutants from water, effective and cheap materials and methods are still challenging. In this study, highly porous hydroxyapatite/graphene oxide/chitosan beads (H...

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Autores principales: Hoa, Nguyen Van, Minh, Nguyen Cong, Cuong, Hoang Ngoc, Dat, Pham Anh, Nam, Pham Viet, Viet, Pham Hau Thanh, Phuong, Pham Thi Dan, Trung, Trang Si
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538019/
https://www.ncbi.nlm.nih.gov/pubmed/34684704
http://dx.doi.org/10.3390/molecules26206127
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author Hoa, Nguyen Van
Minh, Nguyen Cong
Cuong, Hoang Ngoc
Dat, Pham Anh
Nam, Pham Viet
Viet, Pham Hau Thanh
Phuong, Pham Thi Dan
Trung, Trang Si
author_facet Hoa, Nguyen Van
Minh, Nguyen Cong
Cuong, Hoang Ngoc
Dat, Pham Anh
Nam, Pham Viet
Viet, Pham Hau Thanh
Phuong, Pham Thi Dan
Trung, Trang Si
author_sort Hoa, Nguyen Van
collection PubMed
description Dye and heavy metal contaminants are mainly aquatic pollutants. Although many materials and methods have been developed to remove these pollutants from water, effective and cheap materials and methods are still challenging. In this study, highly porous hydroxyapatite/graphene oxide/chitosan beads (HGC) were prepared by a facile one-step method and investigated as efficient adsorbents. The prepared beads showed a high porosity and low bulk density. SEM images indicated that the hydroxyapatite (HA) nanoparticles and graphene oxide (GO) nanosheets were well dispersed on the CTS matrix. FT-IR spectra confirmed good incorporation of the three components. The adsorption behavior of the obtained beads to methylene blue (MB) and copper ions was investigated, including the effect of the contact time, pH medium, dye/metal ion initial concentration, and recycle ability. The HGC beads showed rapid adsorption, high capacity, and easy separation and reused due to the porous characteristics of GO sheets and HA nanoparticles as well as the rich negative charges of the chitosan (CTS) matrix. The maximum sorption capacities of the HGC beads were 99.00 and 256.41 mg g(−1) for MB and copper ions removal, respectively.
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spelling pubmed-85380192021-10-24 Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal Hoa, Nguyen Van Minh, Nguyen Cong Cuong, Hoang Ngoc Dat, Pham Anh Nam, Pham Viet Viet, Pham Hau Thanh Phuong, Pham Thi Dan Trung, Trang Si Molecules Article Dye and heavy metal contaminants are mainly aquatic pollutants. Although many materials and methods have been developed to remove these pollutants from water, effective and cheap materials and methods are still challenging. In this study, highly porous hydroxyapatite/graphene oxide/chitosan beads (HGC) were prepared by a facile one-step method and investigated as efficient adsorbents. The prepared beads showed a high porosity and low bulk density. SEM images indicated that the hydroxyapatite (HA) nanoparticles and graphene oxide (GO) nanosheets were well dispersed on the CTS matrix. FT-IR spectra confirmed good incorporation of the three components. The adsorption behavior of the obtained beads to methylene blue (MB) and copper ions was investigated, including the effect of the contact time, pH medium, dye/metal ion initial concentration, and recycle ability. The HGC beads showed rapid adsorption, high capacity, and easy separation and reused due to the porous characteristics of GO sheets and HA nanoparticles as well as the rich negative charges of the chitosan (CTS) matrix. The maximum sorption capacities of the HGC beads were 99.00 and 256.41 mg g(−1) for MB and copper ions removal, respectively. MDPI 2021-10-11 /pmc/articles/PMC8538019/ /pubmed/34684704 http://dx.doi.org/10.3390/molecules26206127 Text en © 2021 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
Hoa, Nguyen Van
Minh, Nguyen Cong
Cuong, Hoang Ngoc
Dat, Pham Anh
Nam, Pham Viet
Viet, Pham Hau Thanh
Phuong, Pham Thi Dan
Trung, Trang Si
Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title_full Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title_fullStr Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title_full_unstemmed Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title_short Highly Porous Hydroxyapatite/Graphene Oxide/Chitosan Beads as an Efficient Adsorbent for Dyes and Heavy Metal Ions Removal
title_sort highly porous hydroxyapatite/graphene oxide/chitosan beads as an efficient adsorbent for dyes and heavy metal ions removal
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538019/
https://www.ncbi.nlm.nih.gov/pubmed/34684704
http://dx.doi.org/10.3390/molecules26206127
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