Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid
Recent Advances in Adsorptive Separation Materials and Technologies|Updated:2026-01-06
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Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid
Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid
中国化学工程学报(英文版)2022年42卷第2期 页码:55-63
Affiliations:
1. Key Laboratory of Marine Chemistry Theory and Technology of Ministry of Education, Ocean University of China,Qingdao,China,266100
2. School of Environmental Science and Engineering, Shandong University,Qingdao,China,266237
Author bio:
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纸质出版:2022
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Wanyuan Wang, Chengxin Wen, Daoyuan Zheng, 等. Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid[J]. 中国化学工程学报(英文版), 2022,42(2):55-63.
Wanyuan Wang, Chengxin Wen, Daoyuan Zheng, Chunhu Li, Junjie Bian, Xinbo Wang. Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid[J]. Chinese Journal of Chemical Engineering, 2022, 42(2): 55-63.
Wanyuan Wang, Chengxin Wen, Daoyuan Zheng, 等. Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid[J]. 中国化学工程学报(英文版), 2022,42(2):55-63.DOI:
Wanyuan Wang, Chengxin Wen, Daoyuan Zheng, Chunhu Li, Junjie Bian, Xinbo Wang. Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid[J]. Chinese Journal of Chemical Engineering, 2022, 42(2): 55-63.DOI:
Simultaneous degradation of RhB and reduction of Cr(VI) by MIL-53(Fe)/Polyaniline (PANI) with the mediation of organic acid
MIL-53(Fe)/polyaniline (PANI) composite was prepared by
in situ
depositing PANI on the surface of MIL-53(Fe) and their catalytic performances on the simultaneous removal of RhB and Cr(VI) were investigated. The elimination efficiency of both RhB and Cr(VI) reached more than 98% under pH=2 where hydrochloric acid and citric acid were used to adjust the pH. The results indicated that MIL-53(Fe)/PANI revealed an obvious pH response to the degradation of RhB
while citric acid promoted the Cr(VI) photoreduction. UV-Vis spectra
EIS
and photocurrent response experiments showed that MIL-53(Fe)/PANI had a better light response and carrier migration ability than MIL-53(Fe). The transient absorption spectra also exhibited that the lifetimes of photo-generated carriers were prolonged after the conductive polymer deposition on the MIL-53(Fe) surface. Scavenger experiments demonstrated that the main active species were ·O
2
-
and OH. Combined with activity evaluation results
and the possible photocatalytic mechanism of MIL-53(Fe)/PANI on RhB oxidation and Cr(VI) reduction was proposed
. The addition of conductive polymer can effectively improve the light response of the catalyst under acidic conditions
and meanwhile citric acid also provided a new mediation for the synergistic degradation of multiple pollutants. Good activity and stability of the catalysts made the scale-up purification of acid water feasible under UV-Vis light.
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相关作者
Sili Ren
Ting Li
Shitong Xu
Aishun Ma
Hongxia Liu
Jianping Zou
Hanlin Qian
Hanlin Qian
相关机构
Jiangxi Provincial Key Laboratory of Low-Carbon Processing and Utilization of Strategic Metal Mineral Resources
Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University
Jiangxi Key Laboratory of Mining & Metallurgy Environmental Pollution Control, Jiangxi University of Science and Technology
Jiangxi Provincial Key Laboratory of Low-Carbon Processing and Utilization of Strategic Metal Mineral Resources, Jiangxi University of Science and Technology
École Supérieure de Chimie Organique et Minérale, 1 Rue du Réseau Jean-Marie Buckmaster, Compiègne