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Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution

The removal efficiency of Cu(II) in aqueous solution by bentonite, graphene oxide (GO), and nanoscale iron decorated on bentonite (B-nZVI) and nanoscale iron decorated on bentonite/graphene oxide (GO-B-nZVI) was investigated. The results indicated that GO-B-nZVI had the best removal efficiency in di...

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Autores principales: Shao, Jicheng, Yu, Xiaoniu, Zhou, Min, Cai, Xiaoqing, Yu, Chuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6025343/
https://www.ncbi.nlm.nih.gov/pubmed/29867035
http://dx.doi.org/10.3390/ma11060945
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author Shao, Jicheng
Yu, Xiaoniu
Zhou, Min
Cai, Xiaoqing
Yu, Chuang
author_facet Shao, Jicheng
Yu, Xiaoniu
Zhou, Min
Cai, Xiaoqing
Yu, Chuang
author_sort Shao, Jicheng
collection PubMed
description The removal efficiency of Cu(II) in aqueous solution by bentonite, graphene oxide (GO), and nanoscale iron decorated on bentonite (B-nZVI) and nanoscale iron decorated on bentonite/graphene oxide (GO-B-nZVI) was investigated. The results indicated that GO-B-nZVI had the best removal efficiency in different experimental environments (with time, pH, concentration of copper ions, and temperature). For 16 hours, the removal efficiency of copper ions was 82% in GO-B-nZVI, however, it was 71% in B-nZVI, 26% in bentonite, and 18% in GO. Bentonite, GO, B-nZVI, and GO-B-nZVI showed an increased removal efficiency of copper ions with the increase of pH under a certain pH range. The removal efficiency of copper ions by GO-B-nZVI first increased and then fluctuated slightly with the increase of temperature, while B-nZVI and bentonite increased and GO decreased slightly with the increase of temperature. Lorentz-Transmission Electron Microscope (TEM) images showed the nZVI particles of GO-B-nZVI dispersed evenly with diameters ranging from 10 to 86.93 nm. Scanning electron microscope (SEM) images indicated that the nanoscale iron particles were dispersed evenly on bentonite and GO with no obvious agglomeration. The q(e,cal) (73.37 mg·g(−1) and 83.89 mg·g(−1)) was closer to the experimental value q(e,exp) according to the pseudo-second-order kinetic model. The q(m) of B-nZVI and GO-B-nZVI were 130.7 mg·g(−1) and 184.5 mg·g(−1) according to the Langmuir model.
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spelling pubmed-60253432018-07-09 Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution Shao, Jicheng Yu, Xiaoniu Zhou, Min Cai, Xiaoqing Yu, Chuang Materials (Basel) Article The removal efficiency of Cu(II) in aqueous solution by bentonite, graphene oxide (GO), and nanoscale iron decorated on bentonite (B-nZVI) and nanoscale iron decorated on bentonite/graphene oxide (GO-B-nZVI) was investigated. The results indicated that GO-B-nZVI had the best removal efficiency in different experimental environments (with time, pH, concentration of copper ions, and temperature). For 16 hours, the removal efficiency of copper ions was 82% in GO-B-nZVI, however, it was 71% in B-nZVI, 26% in bentonite, and 18% in GO. Bentonite, GO, B-nZVI, and GO-B-nZVI showed an increased removal efficiency of copper ions with the increase of pH under a certain pH range. The removal efficiency of copper ions by GO-B-nZVI first increased and then fluctuated slightly with the increase of temperature, while B-nZVI and bentonite increased and GO decreased slightly with the increase of temperature. Lorentz-Transmission Electron Microscope (TEM) images showed the nZVI particles of GO-B-nZVI dispersed evenly with diameters ranging from 10 to 86.93 nm. Scanning electron microscope (SEM) images indicated that the nanoscale iron particles were dispersed evenly on bentonite and GO with no obvious agglomeration. The q(e,cal) (73.37 mg·g(−1) and 83.89 mg·g(−1)) was closer to the experimental value q(e,exp) according to the pseudo-second-order kinetic model. The q(m) of B-nZVI and GO-B-nZVI were 130.7 mg·g(−1) and 184.5 mg·g(−1) according to the Langmuir model. MDPI 2018-06-04 /pmc/articles/PMC6025343/ /pubmed/29867035 http://dx.doi.org/10.3390/ma11060945 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shao, Jicheng
Yu, Xiaoniu
Zhou, Min
Cai, Xiaoqing
Yu, Chuang
Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title_full Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title_fullStr Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title_full_unstemmed Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title_short Nanoscale Zero-Valent Iron Decorated on Bentonite/Graphene Oxide for Removal of Copper Ions from Aqueous Solution
title_sort nanoscale zero-valent iron decorated on bentonite/graphene oxide for removal of copper ions from aqueous solution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6025343/
https://www.ncbi.nlm.nih.gov/pubmed/29867035
http://dx.doi.org/10.3390/ma11060945
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