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Electrochemical dechlorination of trichloroethylene in the presence of natural organic matter metal ions and nitrates in a simulated karst media

机译:在模拟岩溶介质中在天然有机物金属离子和硝酸盐存在下对三氯乙烯进行电化学脱氯

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摘要

A small-scale flow-through limestone column was used to evaluate the effect of common coexisting organic and inorganic compounds on the electrochemical dechlorination of trichloroethylene (TCE) in karst media. Iron anode was used to produce ferrous ions and promote reducing conditions in the column. The reduction of TCE under 90 mA current, 1 mL min−1 flow rate, and 1 mg L−1 initial TCE concentration, was inhibited in the presence of humic acids due to competition for direct electron transfer and/or reaction with atomic hydrogen produced at the cathode surface by water electrolysis. Similarly, presence of 10 mg L−1 chromate decreased TCE reduction rate to 53%. The hexavalent chromium was completely reduced to trivalent chromium due to the ferrous species produced from iron anode. Presence of 5 mg L−1 selenate decreased the removal of TCE by 10%. Chromium and selenate complexation with dissolved iron results in formation of aggregates, which cover the electrodes surface and reduce TCE dechlorination rate. Presence of 40 mg L−1 nitrates caused reductive transformation of TCE up to 80%. Therefore, TCE removal is influenced by the presence of other contaminants that are present as a mixture in groundwater in the following order: humic acid, chromate, selenate, and nitrate.
机译:小型流通式石灰石柱用于评估岩溶介质中常见的有机和无机化合物共存对三氯乙烯(TCE)电化学脱氯的影响。铁阳极用于产生亚铁离子并促进色谱柱中的还原条件。在存在腐殖酸的情况下,在90 mA电流,1 mL min -1 流速和1 mg L -1 初始TCE浓度下,TCE的降低受到抑制。竞争直接电子转移和/或与水电解在阴极表面产生的氢原子反应。同样,存在10 mg L -1 铬酸盐会使TCE降低率降至53%。由于从铁阳极产生的亚铁种类,六价铬被完全还原为三价铬。 5 mg L -1 硒酸盐的存在使TCE的去除降低了10%。铬和硒酸盐与溶解的铁络合导致形成聚集体,该聚集体覆盖电极表面并降低TCE的脱氯速率。 40 mg L −1 硝酸盐的存在导致TCE的还原转化率高达80%。因此,TCE的去除受到其他污染物的影响,这些污染物以下列顺序作为混合物存在于地下水中:腐殖酸,铬酸盐,硒酸盐和硝酸盐。

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