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首页> 外文期刊>Environmental engineering and management journal >ELECTROCHEMICAL CATALYTIC DEGRADATION AND BIODEGRADABILITY ENHANCEMENT OF REAL TEXTILE WASTEWATER BY ANODIC AND CATHODIC REACTIONS
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ELECTROCHEMICAL CATALYTIC DEGRADATION AND BIODEGRADABILITY ENHANCEMENT OF REAL TEXTILE WASTEWATER BY ANODIC AND CATHODIC REACTIONS

机译:阳极和阴极反应电化学降解天然纺织废水并提高生物降解性

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摘要

An electro-Fenton process was carried out using undivided cell containing tridimensional graphite felt cathode for treatment of real textile wastewater. The study is essentially focused on effects of pH, applied current and transition metal types (Fe2+ and Cu2+) as catalysts on the electrochemical degradation efficiency based on color and COD removal and BOD5/COD value. The results indicated that pH 3 and applied current of 150 mA are the optimum conditions for decolorization and COD removal of real textile wastewater. Moreover, the increasing of the transition metal dosage enhanced efficiency of electro-Fenton process significantly. The BOD5/COD value of textile wastewater increased from 0.127 to 0.156, 0.38 and 0.453, after electrogenerated hydrogen peroxide with anodic oxidation and electro-Fenton processes conducted with Cu2+ and Fe2+ respectively. Therefore, biodegradability was significantly enhanced in presence of catalysts (Fe2+ and Cu-2+), particularly in presence of Fe2+ which was superior to Cu2+. It is also concluded that the electro-Fenton process is an effective technology for the colored wastewater treatment and it can be a pretreatment before biological processes.
机译:使用包含立体石墨毡阴极的不分隔电池进行实际的纺织品废水的电子芬顿工艺。该研究主要集中在pH,施加的电流和过渡金属类型(Fe2 +和Cu2 +)作为催化剂对电化学降解效率的影响上,基于颜色和COD去除量以及BOD5 / COD值。结果表明,pH 3和施加的150 mA电流是实际纺织品废水脱色和COD去除的最佳条件。此外,过渡金属用量的增加显着提高了电芬顿法的效率。在分别用Cu2 +和Fe2 +进行阳极氧化的电生成过氧化氢和电Fenton处理之后,纺织品废水的BOD5 / COD值从0.127分别增加到0.156、0.38和0.453。因此,在催化剂(Fe2 +和Cu-2 +)的存在下,特别是在优于Cu2 +的Fe2 +的存在下,生物降解能力得到了显着提高。还得出结论,电芬顿法是处理有色废水的有效技术,可以在生物过程之前进行预处理。

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