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Degradation of azo dye Acid Red 14 in aqueous solution by electrokinetic and electrooxidation process

机译:电动和电化学氧化降解偶氮染料酸性红14

摘要

A new wastewater treatment technology-electrokinetic-electrooxidation process (EK-EO process) is developed in this paper. The EK-EO process can take advantage of both electrooxidation on the anode surface and the electrokinetic process of anionic impurities under an electric field, which can enhance the TOC removal in electrolysis process. The degradation of an anionic azo dye Acid Red 14 (AR14) was experimentally investigated. It was found that under an electric field AR14 could be migrated into anode compartment and be efficiently mineralized. After 360 min electrolysis of 100 mg l(-1) AR14 solutions at 4.5 mA cm(-2), Complete discoloration was observed in both cathode and anode compartment. About 60% TOC was electromigrated from cathode compartment to anode compartment, and more than 25 mg l(-1) TOC was abated in anode compartment. A possible degradation mechanism of AR14 by EK-EO process was proposed. Additionally, the effect of current density, recycling flux, and electrolyte concentration on the EK-EO degradation of AR14 was also investigated. (C) 2004 Published by Elsevier Ltd.
机译:本文开发了一种新的废水处理技术-电动-电氧化工艺(EK-EO工艺)。 EK-EO工艺既可以利用阳极表面的电氧化作用,又可以利用电场下阴离子杂质的电动过程,从而可以提高电解过程中的TOC去除率。实验研究了阴离子偶氮染料酸性红14(AR14)的降解。发现在电场下AR14可以迁移到阳极室中并且被有效地矿化。在4.5 mA cm(-2)处电解100 mg l(-1)AR14溶液360分钟后,在阴极室和阳极室均观察到完全变色。约60%的TOC从阴极室电迁移到阳极室,并且阳极室中的TOC减少了25 mg l(-1)。提出了可能的EK-EO降解AR14的机理。此外,还研究了电流密度,循环通量和电解质浓度对AR14的EK-EO降解的影响。 (C)2004由Elsevier Ltd.出版

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    Wang AM; Qu JH; Liu HJ; Ge JT;

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