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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Towards the complete dechlorination of chloroacetic acids in water by sonoelectrochemical methods: Effect of the cathode material on the degradation of trichloroacetic acid and its degradation by-products
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Towards the complete dechlorination of chloroacetic acids in water by sonoelectrochemical methods: Effect of the cathode material on the degradation of trichloroacetic acid and its degradation by-products

机译:通过声电化学方法实现水中氯乙酸的完全脱氯:阴极材料对三氯乙酸降解及其降解副产物的影响

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摘要

The effect that the cathode material has on the electrochemical and high-frequency sonoelectrochemical degradation of TCAA in water samples with no background electrolyte has been studied in the work here presented. For all the cathode materials employed (Ti, AISI 304 stainless steel, carbon and Pb), the high-frequency sonoelectrochemical treatment yielded significantly higher fractional conversions for trichloroacetic acid and a significantly higher degradation efficiency when considering the removal of chlorinated species from the treated solutions. Moreover, differences in fractional conversion, degradation efficiency, current efficiency, C mass balance error and the concentration of the different trichloroacetic acid degradation by-products show how the cathode material has a strong effect on the efficiency of the electrochemical and high-frequency sonoelectrochemical treatments and the degradation mechanisms that may take place. Regarding this, complete dechlorination was virtually achieved in the high-frequency sonoelectrochemical degradation using a Pb cathode, where C mass balance results suggested the mineralization of TCAA. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本文介绍的工作中,研究了阴极材料对无背景电解质的水样中TCAA的电化学和高频声电化学降解的影响。对于所有使用的正极材料(Ti,AISI 304不锈钢,碳和Pb),当考虑从处理过的溶液中去除氯化物时,高频声电化学处理对三氯乙酸的分馏转化率明显更高,并且降解效率也明显更高。 。此外,分数转化率,降解效率,电流效率,C质量平衡误差以及不同的三氯乙酸降解副产物的浓度之间的差异表明,阴极材料如何对电化学和高频声电化学处理的效率产生强烈影响以及可能发生的降级机制。关于这一点,使用Pb阴极在高频声电化学降解中实际上实现了完全脱氯,其中C质量平衡的结果表明TCAA的矿化。 (C)2014 Elsevier B.V.保留所有权利。

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