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Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal

Herein, nanoscale iron (oxyhydr)oxide-coated carbon nanotube (CNT) filters were rationally designed for rapid and effective removal of Sb(iii) from water. These iron (oxyhydr)oxide particles (<5 nm) were uniformly coated onto the CNT sidewalls. The as-fabricated hybrid filter demonstrated improve...

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Detalles Bibliográficos
Autores principales: Liu, Yanbiao, Yao, Jinyu, Liu, Fuqiang, Shen, Chensi, Li, Fang, Yang, Bo, Huang, Manhong, Sand, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064765/
https://www.ncbi.nlm.nih.gov/pubmed/35515251
http://dx.doi.org/10.1039/c9ra02988e
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author Liu, Yanbiao
Yao, Jinyu
Liu, Fuqiang
Shen, Chensi
Li, Fang
Yang, Bo
Huang, Manhong
Sand, Wolfgang
author_facet Liu, Yanbiao
Yao, Jinyu
Liu, Fuqiang
Shen, Chensi
Li, Fang
Yang, Bo
Huang, Manhong
Sand, Wolfgang
author_sort Liu, Yanbiao
collection PubMed
description Herein, nanoscale iron (oxyhydr)oxide-coated carbon nanotube (CNT) filters were rationally designed for rapid and effective removal of Sb(iii) from water. These iron (oxyhydr)oxide particles (<5 nm) were uniformly coated onto the CNT sidewalls. The as-fabricated hybrid filter demonstrated improved sorption kinetics and capacity compared with the conventional batch system. At a flow rate of 6 mL min(−1), a Sb(iii) pseudo-first-order adsorption rate constant of 0.051 and a removal efficiency of >99% was obtained when operated in the recirculation mode. The improved Sb(iii) sorption performance can be ascribed to the synergistic effects of convection-enhanced mass transport, limited pore size, and more exposed active sorption sites of the filters. The presence of 1–10 mmol L(−1) of carbonate, sulfate, and chloride inhibits Sb(iii) removal negligibly. Exhausted hybrid filters can be effectively regenerated by an electrical field-assisted chemical washing method. STEM characterization confirmed that Sb was mainly sequestered by iron (oxyhydr)oxides. XPS, AFS and XAFS results suggest that a certain amount of Sb(iii) was converted to Sb(v) during filtration. DFT calculations further indicate that the bonding energy for Sb(iii) onto the iron (oxyhydr)oxides was 2.27–2.30 eV, and the adsorbed Sb(iii) tends to be oxidized.
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spelling pubmed-90647652022-05-04 Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal Liu, Yanbiao Yao, Jinyu Liu, Fuqiang Shen, Chensi Li, Fang Yang, Bo Huang, Manhong Sand, Wolfgang RSC Adv Chemistry Herein, nanoscale iron (oxyhydr)oxide-coated carbon nanotube (CNT) filters were rationally designed for rapid and effective removal of Sb(iii) from water. These iron (oxyhydr)oxide particles (<5 nm) were uniformly coated onto the CNT sidewalls. The as-fabricated hybrid filter demonstrated improved sorption kinetics and capacity compared with the conventional batch system. At a flow rate of 6 mL min(−1), a Sb(iii) pseudo-first-order adsorption rate constant of 0.051 and a removal efficiency of >99% was obtained when operated in the recirculation mode. The improved Sb(iii) sorption performance can be ascribed to the synergistic effects of convection-enhanced mass transport, limited pore size, and more exposed active sorption sites of the filters. The presence of 1–10 mmol L(−1) of carbonate, sulfate, and chloride inhibits Sb(iii) removal negligibly. Exhausted hybrid filters can be effectively regenerated by an electrical field-assisted chemical washing method. STEM characterization confirmed that Sb was mainly sequestered by iron (oxyhydr)oxides. XPS, AFS and XAFS results suggest that a certain amount of Sb(iii) was converted to Sb(v) during filtration. DFT calculations further indicate that the bonding energy for Sb(iii) onto the iron (oxyhydr)oxides was 2.27–2.30 eV, and the adsorbed Sb(iii) tends to be oxidized. The Royal Society of Chemistry 2019-06-11 /pmc/articles/PMC9064765/ /pubmed/35515251 http://dx.doi.org/10.1039/c9ra02988e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Yanbiao
Yao, Jinyu
Liu, Fuqiang
Shen, Chensi
Li, Fang
Yang, Bo
Huang, Manhong
Sand, Wolfgang
Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title_full Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title_fullStr Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title_full_unstemmed Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title_short Nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective Sb(iii) removal
title_sort nanoscale iron (oxyhydr)oxide-modified carbon nanotube filter for rapid and effective sb(iii) removal
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064765/
https://www.ncbi.nlm.nih.gov/pubmed/35515251
http://dx.doi.org/10.1039/c9ra02988e
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