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Photo-electrochemical degradation of wastewaters containing organics catalysed by phosphate-based materials: a review

机译:磷酸盐基材料催化含有机物废水的光电化学降解研究进展

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摘要

Over the last few years, new advanced oxidation processes (AOPs) have been developed to the removal of organic pollutants from waters and wastewaters. The effectiveness of these AOPs as powerful way for the removal of POPs is related to the in situ production of strong oxidative species such as the hydroxyl radicals (center dot OH). Among the techniques involving AOPs, photo-electrocatalysis (PEC) has come out as a powerful AOP consisting of the combination of both photocatalytic and electrocatalytic processes for the objective to retard and/or avoid the fast recombination of the formed electron/hole pairs during the PEC. This can be achieved by the extraction of the photogenerated electrons directed to the cathode when an external bias potential is applied to the photoanode. This general and critical review deals with the application of PEC to the remediation of organic pollutants from wastewaters (i.e. dyeing effluents) using phosphate-based photoanodes namely BiPO4, Ag3PO4, Cu-2(OH)PO(4)and others. A detailed description of the PEC power of different photoanode has been discussed. The fundamentals and main applications of photo-electrochemical oxidation are reported. Finally, some critiques are proposed in order to improve and develop new effective photoanodes with perspectives to industrial applications.
机译:在过去几年中,已经开发了新的高级氧化工艺(AOP)来去除水和废水中的有机污染物。这些AOPs作为去除持久性有机污染物的有力途径的有效性与原位产生强氧化物质如羟基自由基(中心点OH)有关。在涉及AOP的技术中,光电催化(PEC)是一种强大的AOP,由光催化和电催化过程的组合组成,目的是在PEC过程中延缓和/或避免形成的电子/空穴对的快速复合。这可以通过在向光阳极施加外部偏置电位时提取指向阴极的光生电子来实现。本一般性和批判性综述涉及PEC在废水(即染色废水)中使用磷酸盐基光阳极(即BiPO4、Ag3PO4、Cu-2(OH)PO(4)等)修复有机污染物的应用。本文详细描述了不同光阳极的PEC功率。报道了光电化学氧化的基本原理和主要应用。最后,提出了一些批评意见,以改进和开发新的有效光阳极,并展望工业应用。

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