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Electrochemical degradation of trichloroethylene in aqueous solution by bipolar graphite electrodes

机译:双极石墨电极对水溶液中三氯乙烯的电化学降解

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摘要

In this study, we tested the use of the bipolar electrodes to enhance electrochemical degradation of trichloroethylene (TCE) in an undivided, flow-through electrochemical reactor. The bipolar electrode forms when an electrically conductive material polarizes between feeder electrodes that are connected to a direct current source and, therefore, creates an additional anode/cathode pair in the system. We hypothesize that bipolar electrodes will generate additional oxidation/reduction zones to enhance TCE degradation. The graphite cathode followed by graphite anode sequence were operated without a bipolar electrode as well as with one and two bipolar graphite electrodes. The system without bipolar electrodes degraded 29% of TCE while the system with one and two bipolar electrodes degraded 38% and 66% of TCE, respectively. It was found that the removal mechanism for TCE in bipolar mode includes hydrodechlorination at the feeder cathode, and oxidation through reaction with peroxide. The results show that the bipolar electrodes presence enhance TCE removal efficiency and rate and imply that they can be used to improve electrochemical treatment of contaminated groundwater.
机译:在这项研究中,我们测试了在不分隔的流通式电化学反应器中使用双极电极增强三氯乙烯(TCE)的电化学降解。当导电材料在连接到直流电源的馈线电极之间极化时,会形成双极电极,因此会在系统中创建额外的阳极/阴极对。我们假设双极电极将产生额外的氧化/还原区,以增强三氯乙烯的降解。在没有双极电极以及有一个和两个双极石墨电极的情况下操作石墨阴极,随后是石墨阳极序列。没有双极电极的系统使TCE降低了29%,而有一个和两个双极电极的系统使TCE降低了38%和66%。发现双极模式下TCE的去除机理包括在进料器阴极加氢脱氯,以及通过与过氧化物反应而氧化。结果表明,双极电极的存在提高了三氯乙烯的去除效率和去除率,表明它们可用于改善对地下水的电化学处理。

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