Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater

The contamination of groundwater by arsenic (As) in Bangladesh is the biggest impairing of a population, with a large number of peoples affected. Specifically, groundwater of Gangetic Delta is alarmingly contaminated with arsenic. Similar, perilous circumstances exist in many other countries and con...

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Published in:Chemosphere
Main Author: Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
Format: Retracted
Language:English
Published: Elsevier Ltd 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099633034&doi=10.1016%2fj.chemosphere.2021.129653&partnerID=40&md5=cd672a8d1736733fab3c5dcc7fc11eff
id 2-s2.0-85099633034
spelling 2-s2.0-85099633034
Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
2021
Chemosphere
272

10.1016/j.chemosphere.2021.129653
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099633034&doi=10.1016%2fj.chemosphere.2021.129653&partnerID=40&md5=cd672a8d1736733fab3c5dcc7fc11eff
The contamination of groundwater by arsenic (As) in Bangladesh is the biggest impairing of a population, with a large number of peoples affected. Specifically, groundwater of Gangetic Delta is alarmingly contaminated with arsenic. Similar, perilous circumstances exist in many other countries and consequently, there is a dire need to develop cost-effective decentralized filtration unit utilizing low-cost adsorbents for eliminating arsenic from water. Morphological synthesis of carbon with unique spherical, nanorod, and massive nanostructures were achieved by solvothermal method. Owing to their intrinsic adsorption properties and different nanostructures, these nanostructures were employed as adsorption of arsenic in aqueous solution, with the purpose to better understanding the morphological effect in adsorption. It clearly demonstrated that carbon with nanorods morphology exhibited an excellent adsorption activity of arsenite (about 82%) at pH 3, remarkably superior to the two with solid sphere and massive microstructures, because of its larger specific surface area, enhanced acid strength and improved adsorption capacity. Furthermore, we discovered that iron hydroxide radicals and energy-induced contact point formation in nanorods are the responsible for the high adsorption of As in aqueous solution. Thus, our work provides insides into the microstructure-dependent capability of different carbon for As adsorption applications. © 2021 Elsevier Ltd
Elsevier Ltd
456535
English
Retracted

author Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
spellingShingle Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
author_facet Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
author_sort Islam A.; Teo S.H.; Ahmed M.T.; Khandaker S.; Ibrahim M.L.; Vo D.-V.N.; Abdulkreem-Alsultan G.; Khan A.S.
title Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
title_short Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
title_full Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
title_fullStr Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
title_full_unstemmed Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
title_sort Novel micro-structured carbon-based adsorbents for notorious arsenic removal from wastewater
publishDate 2021
container_title Chemosphere
container_volume 272
container_issue
doi_str_mv 10.1016/j.chemosphere.2021.129653
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099633034&doi=10.1016%2fj.chemosphere.2021.129653&partnerID=40&md5=cd672a8d1736733fab3c5dcc7fc11eff
description The contamination of groundwater by arsenic (As) in Bangladesh is the biggest impairing of a population, with a large number of peoples affected. Specifically, groundwater of Gangetic Delta is alarmingly contaminated with arsenic. Similar, perilous circumstances exist in many other countries and consequently, there is a dire need to develop cost-effective decentralized filtration unit utilizing low-cost adsorbents for eliminating arsenic from water. Morphological synthesis of carbon with unique spherical, nanorod, and massive nanostructures were achieved by solvothermal method. Owing to their intrinsic adsorption properties and different nanostructures, these nanostructures were employed as adsorption of arsenic in aqueous solution, with the purpose to better understanding the morphological effect in adsorption. It clearly demonstrated that carbon with nanorods morphology exhibited an excellent adsorption activity of arsenite (about 82%) at pH 3, remarkably superior to the two with solid sphere and massive microstructures, because of its larger specific surface area, enhanced acid strength and improved adsorption capacity. Furthermore, we discovered that iron hydroxide radicals and energy-induced contact point formation in nanorods are the responsible for the high adsorption of As in aqueous solution. Thus, our work provides insides into the microstructure-dependent capability of different carbon for As adsorption applications. © 2021 Elsevier Ltd
publisher Elsevier Ltd
issn 456535
language English
format Retracted
accesstype
record_format scopus
collection Scopus
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