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Redox Control for Electrochemical Dechlorination of Trichloroethylene in Bicarbonate Aqueous Media

机译:碳酸氢盐介质中三氯乙烯电化学脱氯的氧化还原控制

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摘要

The role of iron anode on electrochemical dechlorination of aqueous trichloroethylene (TCE) is evaluated using batch mixed-electrolyte experiments. A significantly high er dechlorination rate, up to 99%, is reported when iron anode and copper foam cathodes are used. In contrast to the oxygen releasing inert anode, the cast iron anode generates ferrous species, which regulate the electrolyte to a reducing condition (low ORP value) and favor the reduction of TCE. The main products of TCE electrochemical reduction on copper foam cathode include ethene and ethane. The ratio of these two hydrocarbons gases varied with the electrolyte ORP condition and current density as more ethane gas generates at more reducing electrolyte condition and at higher current condition. A pseudofirst-order model is used to describe the degradation of TCE; the first-order rate constant (k) increases with the current applied but exhibits a negative relation with initial concentration. Depending on the current, electrolysis by iron anode causes a reduction in the ORP and an increase in the pH of the mixed electrolyte. Enhanced reaction rates in this investigation indicate that the electrochemical reduction using copper foam and iron anode may be a promising process for remediation of groundwater contaminated with chlorinated organic compounds.
机译:使用分批混合电解质实验评估了铁阳极在三氯乙烯水溶液(TCE)电化学脱氯中的作用。当使用铁阳极和泡沫铜阴极时,据报道er脱氯率非常高,高达99%。与释放氧气的惰性阳极相反,铸铁阳极产生的亚铁物种可将电解质调节至还原条件(低ORP值)并有利于降低TCE。 TCE在泡沫铜阴极上进行电化学还原的主要产品包括乙烯和乙烷。随着更多的乙烷气体在更还原的电解质条件和更高的电流条件下产生,这两种烃气体的比例随电解质的ORP条件和电流密度而变化。伪一阶模型用于描述TCE的降级。一级速率常数(k)随电流的增加而增加,但与初始浓度呈负相关。取决于电流,通过铁阳极进行的电解会导致ORP降低,混合电解质的pH值升高。这项研究中提高的反应速率表明,使用泡沫铜和铁阳极进行电化学还原可能是修复被氯代有机化合物污染的地下水的有前途的方法。

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  • 来源
    《Environmental Science & Technology》 |2011年第15期|p.6517-6523|共7页
  • 作者单位

    Civil and Environmental Engineering Department, Northeastern University, 400 Snell Engineering, 360 Huntington Avenue, Boston,Massachusetts 02115, United States;

    Civil and Environmental Engineering Department, Northeastern University, 400 Snell Engineering, 360 Huntington Avenue, Boston,Massachusetts 02115, United States;

    Civil and Environmental Engineering Department, Northeastern University, 400 Snell Engineering, 360 Huntington Avenue, Boston,Massachusetts 02115, United States;

    Civil and Environmental Engineering Department, Northeastern University, 400 Snell Engineering, 360 Huntington Avenue, Boston,Massachusetts 02115, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:03:48

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