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Photochemically Induced Electron Transfer: Simultaneously Decolorizing Dye and Reducing Cr(VI)
Authors:Minwang Laipan  Haoyang Fu  Runliang Zhu  Linda Rivera  Gangqiang Zhu  Jianxi Zhu  Hongping He
Institution:1.CAS Key Laboratory of Mineralogy and Metallogeny/Guangdong Provincial Key Laboratory of Mineral Physics and Materials, Guangzhou Institute of Geochemistry,Chinese Academy of Sciences (CAS),Guangzhou,China;2.University of Chinese Academy of Sciences,Beijing,China;3.School of Physics and Information Technology,Shaanxi Normal University,Xi’an,People’s Republic of China;4.Department of Chemical and Biomolecular Engineering, Polymer Program, Institute of Materials Science,University of Connecticut,Storrs,USA
Abstract:Hexavalent chromium (Cr(VI)) and dyes are of particular environmental concern and need to be removed from water urgently due to their high toxicity. Herein, we explored the possibility of electron transferring from dye Orange II (OII) to Cr(VI) under UV and simulated solar light irradiation, expecting to simultaneously decolorize dyes and reduce Cr(VI). Experimental results show that light irradiation can partially decolorize OII but has no ability to reduce Cr(VI) in solution only with OII or Cr(VI). However, both dyes and Cr(VI) can effectively and simultaneously be decolorized and reduced in the solution containing both OII and Cr(VI) under light irradiation, and a low pH level and high OII/Cr(VI) concentration ratio significantly favor the co-removal. Additionally, insoluble organo–Cr(III) complexes identified by FTIR and XPS characterization were generated during the reaction. These complexes are beneficial to the removal of chromium and total organic carbon from water. The possible degradation pathway of OII is further proposed based on the detection of degraded products by GC-MS analysis. The results of this work offer an approach for simultaneously removing multiple contaminants.
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