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Mineralization of an azo dye Acid Red 14 by photoelectro-Fenton process using an activated carbon fiber cathode

机译:使用活性碳纤维阴极通过光电芬顿法矿化偶氮染料酸性红14

摘要

The mineralization of an azo dye Acid Red 14 (AR14) by the photoelectro-Fenton (PEF) process was studied in an undivided electrochemical reactor with a RuO(2)/Ti anode and an activated carbon fiber (ACF) cathode able to electrochemically generate H(2)O(2). Anodic oxidation and UV irradiation of AR14 were also examined as comparative experiments. Results indicate that the electro-Fenton process yielded about 60-70% mineralization of ARK while the photoelectro-Fenton could mineralize AR14 more effectively (more than 94% total organic carbon (TOC) removal) even at low current densities assisted with UV irradiation after 6 h electrolysis. The mineralization current efficiency (MCE) of the PEF process increased with the increasing AR14 concentrations. In addition, the initial solution pH ranging from 1.49 to 6.72 had little influence on the TOC removal probably due to the formation of organic carboxylic acids which balanced the pH increase caused by the cathodic generation of hydrogen gas. The ACF cathode showed a long-term stability during multiple experimental runs for degradation of ARK indicating its good potential for practical application in treating refractory organic pollutants in aqueous solutions. (C) 2008 Elsevier B.V. All rights reserved.
机译:在具有RuO(2)/ Ti阳极和能够电化学产生活性炭纤维(ACF)阴极的不分隔电化学反应器中研究了通过光电芬顿(PEF)工艺对偶氮染料酸性红14(AR14)的矿化作用H(2)O(2)。还比较了AR14的阳极氧化和紫外线照射。结果表明,即使在低电流密度和紫外线照射辅助下,电-Fenton工艺也可产生约60-70%的ARK矿化,而光-Fenton可更有效地矿化AR14(去除总有机碳(TOC)超过94%)。电解6小时。 PEF工艺的矿化电流效率(MCE)随着AR14浓度的增加而增加。另外,初始溶液的pH在1.49至6.72范围内,对TOC的去除影响很小,这可能是由于形成了有机羧酸,平衡了由阴极产生氢气引起的pH升高所致。 ACF阴极在多次实验运行中显示出对ARK降解的长期稳定性,表明其在处理水溶液中的难降解有机污染物方面具有良好的应用前景。 (C)2008 Elsevier B.V.保留所有权利。

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