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Electrochemical oxidation of phenolic wastes with boron-doped diamond anodes

机译:掺硼金刚石阳极对酚类废物的电化学氧化

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The electrochemical oxidation of several phenolic aqueous wastes has been studied using a bench-scale plant with a single-compartment electrochemical flow cell. Boron-doped diamond materials were used as the anode. Complete mineralization of the waste was obtained in the treatment of phenols not substituted with chlorine or nitrogen. Chlorinated phenolic compounds were transformed into carbon dioxide; volatile organochlorinated compounds and nitro-substituted phenols deal with the formation of polymeric materials. These polymeric materials behave as final products or treatment intermediates depending on the nature of the initial pollutant. The removal of nitro- or the chloro-group from the phenolic molecule seems to be one of the first stages in the treatment. Non-nitrogenated or chlorinated carboxylic acids have been found to be the main intermediates in the electrochemical oxidation of all the phenolic compounds tested. The efficiencies of the process depend strongly on the concentration of organic pollutants and on their nature, and not on the current density, at least in the operation range studied.
机译:已使用带有单室电化学流通池的台式规模的工厂研究了几种酚类含水废物的电化学氧化。掺硼金刚石材料用作阳极。在未用氯或氮取代的苯酚处理中,废物完全矿化。氯化酚化合物转化为二氧化碳;挥发性有机氯化合物和硝基取代的酚处理聚合物材料的形成。这些聚合物材料取决于最终污染物的性质,充当最终产品或处理中间体。从酚类分子中除去硝基或氯基团似乎是治疗的第一步。已发现非硝化或氯化的羧酸是所有测试的酚类化合物电化学氧化的主要中间体。至少在所研究的操作范围内,该方法的效率在很大程度上取决于有机污染物的浓度及其性质,而不取决于电流密度。

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