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Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods: A general review

机译:电化学方法对含有合成有机染料的废水的净化:综述

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Effluents of a large variety of industries usually contain important quantities of synthetic organic dyes. The discharge of these colored compounds in the environment causes considerable non-aesthetic pollution and serious health-risk factors. Since conventional wastewater treatment plants cannot degrade the majority of these pollutants, powerful methods for the decontamination of dyes wastewaters have received increasing attention over the past decade. This paper presents a general review of efficient electrochemical technologies developed to decolorize and/or degrade dyeing effluents for environmental protection. Fundamentals and main applications of typical methods such as electrocoagulation, electrochemical reduction, electrochemical oxidation and indirect electro-oxidation with active chlorine species are reported. The influence of iron or aluminium anode on decolorization efficiency of synthetic dyes in electrocoagulation is explained. The advantages of electrocatalysis with metal oxides anodes and the great ability of boron-doped diamond electrodes to generate heterogeneous hydroxyl radical as mediated oxidant of these compounds in electrochemical oxidation are extensively discussed. The effect of electrode material, chloride concentration, pH and temperature on the destruction of dyestuffs mediated with electrogenerated active chlorine is analyzed. The degradation power of these pollutants with an emerging electrochemical advanced oxidation process such as electro-Fenton, based on the mediated oxidation by homogeneous hydroxyl radical formed from Fenton's reaction between cathodically produced hydrogen peroxide and catalytic Fe~(2+), is examined. Recent progress of emerging photoassisted electrochemical treatments with UV irradiation such as photoelectro-Fenton and photoelectrocatalysis is also described.
机译:许多行业的废水通常都包含大量的合成有机染料。这些有色化合物在环境中的排放会引起相当大的非美学污染和严重的健康风险因素。由于常规的废水处理厂无法降解大多数这些污染物,因此在过去的十年中,强有力的染料废水净化方法受到了越来越多的关注。本文介绍了为使环境保护脱色和/或降解印染废水而开发的高效电化学技术的综述。报道了典型方法的基本原理和主要应用,例如电凝,电化学还原,电化学氧化和用活性氯进行间接电氧化。解释了铁或铝阳极对电凝过程中合成染料脱色效率的影响。广泛讨论了使用金属氧化物阳极进行电催化的优势以及掺硼金刚石电极在电化学氧化中作为这些化合物的介导氧化剂产生异质羟基自由基的强大能力。分析了电极材料,氯化物浓度,pH和温度对电生成活性氯介导的染料破坏的影响。基于新兴的电化学高级氧化过程(如电芬顿),基于由Fenton阴极生成的过氧化氢与催化Fe〜(2+)之间的反应形成的均相羟基自由基介导的氧化,研究了这些污染物的降解能力。还描述了新兴的用紫外线辐照进行光辅助电化学处理的最新进展,例如光电芬顿和光电催化。

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