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Study on the Effect of Electrochemical Dechlorination Reduction of Hexachlorobenzene Using Different Cathodes

机译:不同阴极电化学降解六氯苯的效果研究

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Hexachlorobenzene (HCB) is a persistent organic pollutant and poses great threat on ecosystem and human health. In order to investigate the degradation law of HCB, a RuO2/Ti material was used as the anode, meanwhile, zinc, stainless steel, graphite, and RuO2/Ti were used as the cathode, respectively. The gas chromatography (GC) was used to analyze the electrochemical products of HCB on different cathodes. The results showed that the cathode materials significantly affected the dechlorination efficiency of HCB, and the degradation of HCB was reductive dechlorination which occurred only on the cathode. During the reductive process, chlorine atoms were replaced one by one on various intermediates such as pentachlorobenzene, tetrachlorobenzene, and trichlorobenzene occurred; the trichlorobenzene was obtained when zinc was used as cathode. The rapid dechlorination of HCB suggested that the electrochemical method using zinc or stainless steel as cathode could be used for remediation of polychlorinated aromatic compounds in the environment. The dechlorination approach of HCB by stainless steel cathode could be proposed.
机译:六氯苯(HCB)是一种持久性有机污染物,对生态系统和人类健康构成巨大威胁。为了研究HCB的降解规律,以RuO2 / Ti材料为阳极,同时以锌,不锈钢,石墨和RuO2 / Ti作为阴极。气相色谱(GC)用于分析六氯代苯在不同阴极上的电化学产物。结果表明,正极材料对六氯苯的脱氯效率有显着影响,六氯苯的降解为还原性脱氯,仅发生在正极上。在还原过程中,氯原子在五氯苯,四氯苯和三氯苯等各种中间体上被一一取代。当锌用作阴极时,得到三氯苯。六氯代苯的快速脱氯表明,以锌或不锈钢为阴极的电化学方法可用于环境中多氯联芳烃的修复。可以提出不锈钢阴极对六氯苯进行脱氯的方法。

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