Applied Catalysis2022,Vol.3079.DOI:10.1016/j.apcatb.2022.121192

Detoxification and selective separation of Cr(VI) and As(III) in wastewater based on interfacial coupling in BiOBr with {110} facet under visible-light irradiation

Li, Tong Zhang, Lili Gao, Yaowen Xing, Xueci Zhang, Xiaohan Li, Fan Hu, Chun
Applied Catalysis2022,Vol.3079.DOI:10.1016/j.apcatb.2022.121192

Detoxification and selective separation of Cr(VI) and As(III) in wastewater based on interfacial coupling in BiOBr with {110} facet under visible-light irradiation

Li, Tong 1Zhang, Lili 2Gao, Yaowen 3Xing, Xueci 3Zhang, Xiaohan 3Li, Fan 3Hu, Chun3
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作者信息

  • 1. Univ Sci & Technol Beijing
  • 2. Chinese Acad Sci
  • 3. Guangzhou Univ
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Abstract

Layered structural BiOBr with {110} facet exposure is a promising functional material for highly selective adsorption and separation of heavy metal ions in water purification. In this study, the distinct adsorption behaviors of As(III), As(V), and Cr(VI) on {110} facet were theoretically and experimentally investigated. The results suggested that uncharged As(III) was dominantly adsorbed on the [Bi2O2](2+) surface replacing the hydroxyl group, whereas Cr(VI) and As(V) oxyanions preferentially intercalated on {110} facet by exchange with Br- ions between the layers. Moreover, due to interfacial coupling configuration ([BiO-CrO4-OBi]-O-As(OH)(2)) between the surface and interlayer on {110} facet, the synergic removal of Cr(VI) and As(III) could be accelerated under photoexcitation to induce a direct electron transfer from surface AsIII to interlayer CrVI, forming AsV and CrIII. Subsequently, approximately 69.3% of Cr(III) and 98.6% of As(V) were readily desorbed in acidic conditions and a high concentration of Br- solution, respectively, to achieve simultaneous detoxification and selective separation.

Key words

Layered structural BiOBr/Interlayer ion exchange/Interfacial coupling/Synergic removal/Selective separation of chromium and arsenic/DEPENDENT PHOTOREACTIVITY/CHARGE SEPARATION/REDOX CONVERSION/OXIDE ADSORBENT/METAL REMOVAL/BINARY OXIDE/CHROMIUM(VI)/ARSENIC(III)/PHOTOCATALYSIS/MECHANISM

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量19
参考文献量37
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