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Electrochemical Reduction Prior to Electro-Fenton Oxidation of Azo Dyes: Impact of the Pretreatment on Biodegradability

机译:Fenton氧化偶氮染料之前的电化学还原:预处理对生物降解性的影响。

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摘要

The aim of this work was to study the degradation of three azo dyes, Orange II, Methyl red and Biebrich Scarlet by electro-Fenton and the effect of the electrochemical pretreatment on the biodegradability of the solutions. The electrochemical pretreatment showed that an electrochemical reduction on the carbon felt electrode was mainly responsible for the decolorization of the azo dyes. Indeed, the electrochemical behaviour of the azo dyes highlighted their electroactivity; electrolysis with and without ferric ions led to the same decolorization yield, namely 99 % at 15 min for Methyl red, and stable chemical oxygen demand (COD) values were recorded during decolorization. In a second step and owing to the absence of by-product electroactivity in reduction, the formation of hydroxyl radicals by the Fenton reaction led to the oxidation of by-products from the electrochemical reduction. It was illustrated by the decrease recorded for the COD values. The results also showed that the azo bond cleavage occurring during the electrochemical reduction was not sufficient to significantly reduce recalcitrance, as shown from biological oxygen demand (BOD)s/COD ratio examination below the limit of biodegradability (0.4). Contrarily, a positive trend was recorded for Orange II during the electro-Fenton reaction, with a BOD_5/COD ratio of 0.81 after 28 h of pretreatment.
机译:这项工作的目的是研究通过电子芬顿降解三种偶氮染料橙色II,甲基红和Biebrich猩红色以及电化学预处理对溶液生物降解性的影响。电化学预处理表明,碳毡电极上的电化学还原主要是偶氮染料的脱色。实际上,偶氮染料的电化学行为突出了它们的电活性。含铁离子和不含铁离子的电解都会导致相同的脱色率,即甲基红在15分钟时达到99%,并且在脱色过程中记录到稳定的化学需氧量(COD)值。在第二步骤中,由于在还原中不存在副产物电活性,因此通过芬顿反应形成的羟基自由基导致电化学还原产生的副产物氧化。通过记录的COD值下降来说明。结果还表明,电化学还原过程中发生的偶氮键裂解不足以显着降低顽固性,如从生物需氧量(BOD)/ COD比检查中可观察到的低于生物可降解性极限(0.4)所示。相反,在电芬顿反应期间,Orange II记录到正趋势,预处理28小时后BOD_5 / COD比为0.81。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2013年第1期|1385.1-1385.11|共11页
  • 作者单位

    Universite de Rennes 1, CNRS, UMR 6226, Avenue du General Leclerc, CS 50837, 35708 Rennes Cedex 7, France,Universite europeenne de Bretagne, Rennes, France;

    Universite de Rennes 1, CNRS, UMR 6226, Avenue du General Leclerc, CS 50837, 35708 Rennes Cedex 7, France,Universite europeenne de Bretagne, Rennes, France;

    Departement Chimie, IUT de Rennes, Universite de Rennes 1, 3 rue du Clos Courtel, BP 1144, 35014 Rennes Cedex, France,Universite europeenne de Bretagne, Rennes, France;

    Departement Chimie, IUT de Rennes, Universite de Rennes 1, 3 rue du Clos Courtel, BP 1144, 35014 Rennes Cedex, France,Universite europeenne de Bretagne, Rennes, France;

    Universite de Rennes 1, CNRS, UMR 6226, Avenue du General Leclerc, CS 50837, 35708 Rennes Cedex 7, France,Universite europeenne de Bretagne, Rennes, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electro-fenton; electrochemical reduction; azo dye; biodegradability;

    机译:电子芬顿电化学还原偶氮染料生物降解性;

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