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A dual TiO_2/Ti-stainless steel anode for the degradation of orange G in a coupling photoelectrochemical and photo-electro-Fenton system

机译:双TiO_2 / Ti-不锈钢阳极用于耦合光电化学和光电子-芬顿体系中的橙G的降解

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A dual-anode consists of stainless steel and TiO2/Ti electrodes is used to study the kinetics of the degradation of hazardous chemicals exemplified by azo dye orange G (OG) using a coupling photoelectrochemical catalytic and photoelectro-Fenton (PEC/PEF) system. Concurrent generation of hydroxyl radicals on the TiO2/Ti photocatalyst and in-situ generation of Fenton reagents on the stainless steel electrode greatly enhances the performance of the PEC/PEF electrodes over that of the PEC and the PEF alone process. The efficiency of the PEC/PEF process is a function of Fe2+ and H2O2 concentration OH center dot in the solution bulk, which promotes the oxidative degradation of OG and its byproducts. The mean carbon oxidation state (COS) is estimated to reflect the degree of mineralization. Based on the pseudo first-order kinetics with respect to OH center dot, OG, Fe2+, the corresponding reaction rates is established. UV-Vis spectrometry reveals the presence of four major intermediates, which helps establish the OG degradation pathways. (c) 2018 Elsevier B.V. All rights reserved.
机译:由不锈钢和TiO2 / Ti电极组成的双阳极用于研究偶合染料橙G(OG)的有害化学物质的降解动力学,该偶合染料采用光电化学催化和光电子芬顿(PEC / PEF)耦合系统。与单独使用PEC和PEF相比,在TiO2 / Ti光催化剂上同时生成羟基自由基和在不锈钢电极上原位生成Fenton试剂大大提高了PEC / PEF电极的性能。 PEC / PEF工艺的效率是溶液中Fe2 +和H2O2浓度OH中心点的函数,这会促进OG及其副产物的氧化降解。估计平均碳氧化态(COS)以反映矿化程度。基于相对于OH中心点,OG,Fe2 +的拟一级动力学,确定了相应的反应速率。紫外可见光谱法揭示了四种主要中间体的存在,这有助于建立OG降解途径。 (c)2018 Elsevier B.V.保留所有权利。

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