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Degradation of Nitrophenols by Cathode Reduction and Electro-fenton Methods

机译:阴极还原和电子芬顿法降解硝基酚

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This study deals with the degradation of various nitrophenols by cathode reduction and Electro-Fenton methods. Using 4-NP as a model nitrophenol, the contribution of different reactions to the degradation of 4-NP is investigated. The degradation of 4-NP is much faster in the cathode cell than in the anodic cell. In the cathode cell, the degradation of 4-NP is significantly enhanced by the introduction of aeration and Fe~(2+). Treatment of high concentration of 4-NP in the undivided cell shows more than 98% removal of 4-NP and about 13% removal of TOC are obtained in both processes. Negligible quantity of nitrate and nitrite ions detected in both processes. Intermediates such as hydroquinone and bezoquinone are detected by GC/MS. The degradation pathway of 4-NP is proposed as the cathode reduction followed by hydroxyl oxidation.
机译:这项研究涉及通过阴极还原和电子芬顿方法降解各种硝基苯酚。使用4-NP作为模型硝基苯酚,研究了不同反应对4-NP降解的贡献。阴极电池中4-NP的降解比阳极电池中的降解快得多。在阴极电池中,通气和Fe〜(2+)的引入显着增强了4-NP的降解。在未分裂的细胞中高浓度的4-NP处理表明,在这两种方法中,4-NP的去除率均超过98%,TOC的去除率约为13%。在这两个过程中检测到的硝酸根和亚硝酸根离子的量可以忽略不计。通过GC / MS检测对苯二酚和对苯二酚等中间体。提出4-NP的降解途径为阴极还原,然后进行羟基氧化。

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