Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite

A novel material named Fe/Mn-C layered double hydroxide composite (Fe/Mn-C-LDH) was synthesized to remove arsenic from an aqueous solution. The removal performance of the composite toward arsenic ions was studied through the batch experiments. The experiment results showed that Fe/Mn-C-LDH exhibited...

Full description

Bibliographic Details
Main Authors: Yaru Wang, Yingying Gao, Zongqiang Zhu, Lihao Zhang, Ningning Zhao, Yali Fang, Yinian Zhu, Guifeng Liu
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2021-01-01
Series:Adsorption Science & Technology
Online Access:http://dx.doi.org/10.1155/2021/8891643
id doaj-28ee44ff458449d5843f6ab0c7121cd6
record_format Article
spelling doaj-28ee44ff458449d5843f6ab0c7121cd62021-03-29T00:09:10ZengHindawi - SAGE PublishingAdsorption Science & Technology2048-40382021-01-01202110.1155/2021/88916438891643Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide CompositeYaru Wang0Yingying Gao1Zongqiang Zhu2Lihao Zhang3Ningning Zhao4Yali Fang5Yinian Zhu6Guifeng Liu7Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaCollaborative Innovation Center for Water Pollution Control and Water Safety in Karst AreaA novel material named Fe/Mn-C layered double hydroxide composite (Fe/Mn-C-LDH) was synthesized to remove arsenic from an aqueous solution. The removal performance of the composite toward arsenic ions was studied through the batch experiments. The experiment results showed that Fe/Mn-C-LDH exhibited a high adsorption capacity of 46.47 mg/g for As(III) and 37.84 mg/g for As(V) at 318 K, respectively. In addition, the investigation of the release of Fe3+ and Mn2+ in the process of arsenic adsorption revealed that the Fe/Mn-C-LDH exhibited better stability than Fe/Mn-layer double hydroxide (Fe/Mn-LDH) with fewer Mn2+ and Fe3+ releasing under the same condition. The BET results showed that the specific surface area of Fe/Mn-C-LDH decreased after adsorption of As (III) and As (V). Furthermore, the Density Functional Theory (DFT) calculation results proved that the adsorbent combining arsenic by T-site to produce a better adsorption effect for arsenic. Possessing better stability and adsorption capacity, Fe/Mn-C-LDH could potentially serve as a perfect adsorbent for arsenic removal from an aqueous environment. It would provide a promising approach for removing heavy metal from the aquatic environment in the future.http://dx.doi.org/10.1155/2021/8891643
collection DOAJ
language English
format Article
sources DOAJ
author Yaru Wang
Yingying Gao
Zongqiang Zhu
Lihao Zhang
Ningning Zhao
Yali Fang
Yinian Zhu
Guifeng Liu
spellingShingle Yaru Wang
Yingying Gao
Zongqiang Zhu
Lihao Zhang
Ningning Zhao
Yali Fang
Yinian Zhu
Guifeng Liu
Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
Adsorption Science & Technology
author_facet Yaru Wang
Yingying Gao
Zongqiang Zhu
Lihao Zhang
Ningning Zhao
Yali Fang
Yinian Zhu
Guifeng Liu
author_sort Yaru Wang
title Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
title_short Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
title_full Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
title_fullStr Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
title_full_unstemmed Enhanced Arsenic Removal from Aqueous Solution by Fe/Mn-C Layered Double Hydroxide Composite
title_sort enhanced arsenic removal from aqueous solution by fe/mn-c layered double hydroxide composite
publisher Hindawi - SAGE Publishing
series Adsorption Science & Technology
issn 2048-4038
publishDate 2021-01-01
description A novel material named Fe/Mn-C layered double hydroxide composite (Fe/Mn-C-LDH) was synthesized to remove arsenic from an aqueous solution. The removal performance of the composite toward arsenic ions was studied through the batch experiments. The experiment results showed that Fe/Mn-C-LDH exhibited a high adsorption capacity of 46.47 mg/g for As(III) and 37.84 mg/g for As(V) at 318 K, respectively. In addition, the investigation of the release of Fe3+ and Mn2+ in the process of arsenic adsorption revealed that the Fe/Mn-C-LDH exhibited better stability than Fe/Mn-layer double hydroxide (Fe/Mn-LDH) with fewer Mn2+ and Fe3+ releasing under the same condition. The BET results showed that the specific surface area of Fe/Mn-C-LDH decreased after adsorption of As (III) and As (V). Furthermore, the Density Functional Theory (DFT) calculation results proved that the adsorbent combining arsenic by T-site to produce a better adsorption effect for arsenic. Possessing better stability and adsorption capacity, Fe/Mn-C-LDH could potentially serve as a perfect adsorbent for arsenic removal from an aqueous environment. It would provide a promising approach for removing heavy metal from the aquatic environment in the future.
url http://dx.doi.org/10.1155/2021/8891643
work_keys_str_mv AT yaruwang enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT yingyinggao enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT zongqiangzhu enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT lihaozhang enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT ningningzhao enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT yalifang enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT yinianzhu enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
AT guifengliu enhancedarsenicremovalfromaqueoussolutionbyfemnclayereddoublehydroxidecomposite
_version_ 1714761083791605760