Zhao Zengying, An He, Lin Jing, Feng Mingchao, Murugadoss Vignesh, Ding Tao, Liu Hu, Shao Qian, Mai Xianmin, Wang Ning, Gu Hongbo, Angaiah Subramania, Guo Zhanhu
School of Science, China University of Geosciences, Beijing, 100083, China.
School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, China.
Chem Rec. 2019 May;19(5):873-882. doi: 10.1002/tcr.201800153. Epub 2018 Nov 14.
Rapid industrialization leads to increased wastewater discharge encompassing hexavalent chromium (Cr(VI)), which leads to serious environmental problems of toxicity and potential carcinogenicity. Removal of these species is normally carried out by ion-exchange, precipitation, membrane filtration, sorption, photocatalytic reduction, etc. This review mainly focuses on the photocatalytic and photoelectrocatalytic (PEC) reduction of Cr (VI), because of their advantages over other methods such as reduced risk of secondary pollution by non-reduced Cr (VI), no sludge formation, no need for a large amount of chemical reagents, clean and easy installation. The main factors influencing the photocatalytic reduction efficiency of Cr (VI) such as catalyst activity, solution pH, Cr adsorption on the catalyst and additives, are briefly discussed. Finally, a special emphasis is provided to the photoelectrocatalytic (PEC) reduction of Cr (VI).
快速工业化导致含六价铬(Cr(VI))的废水排放增加,这引发了严重的毒性和潜在致癌性等环境问题。通常通过离子交换、沉淀、膜过滤、吸附、光催化还原等方法去除这些物质。本综述主要关注Cr(VI)的光催化和光电催化(PEC)还原,因为它们相对于其他方法具有优势,如减少未还原的Cr(VI)造成二次污染的风险、不产生污泥、无需大量化学试剂、清洁且易于安装。简要讨论了影响Cr(VI)光催化还原效率的主要因素,如催化剂活性、溶液pH值、Cr在催化剂和添加剂上的吸附等。最后,特别强调了Cr(VI)的光电催化(PEC)还原。