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首页> 外文期刊>Journal of environmental sciences >Electrochemical oxidation of recalcitrant organic compounds in biologically treated municipal solid waste leachate in a flow reactor
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Electrochemical oxidation of recalcitrant organic compounds in biologically treated municipal solid waste leachate in a flow reactor

机译:流动反应器中经过生物处理的市政固体垃圾渗滤液中难降解有机化合物的电化学氧化

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摘要

Biologically-treated municipal solid waste (MSW) leachate still contains many kinds of bio-recalcitrant organic matter. A new plate and frame electrochemical reactor was designed to treat these materials under flow conditions. In the electrochemical oxidation process, NH_3 and color could be easily removed by means of electro-generated chlorine/hypochlorite within 20 min. The effects of major process parameters on the removal of organic pollutants were investigated systematically. Under experimental conditions, the optimum operation parameters were current density of 65 mA/cm~2, flow velocity of 2.6 cm/sec in electrode gap, and initial chloride ion concentration of 5000 mg/L. The COD in the leachate could be reduced below 100 mg/L after 1 hr of treatment. The kinetics and mechanism of COD removal were investigated by simultaneously monitoring the COD change and chlorine/hypochlorite production. The kinetics of COD removal exhibited a two-stage kinetic model, and the decrease of electro-generated chlorine/hypochlorite production was the major mechanism for the slowing down of the COD removal rate in the second stage. The narrowing of the electrode gap is beneficial for COD removal and energy consumption.
机译:经过生物处理的城市固体垃圾(MSW)渗滤液仍包含多种生物难降解有机物。设计了一种新的板框式电化学反应器,以在流动条件下处理这些材料。在电化学氧化过程中,NH_3和颜色很容易在20分钟内通过电产生的氯/次氯酸盐去除。系统地研究了主要工艺参数对有机污染物去除的影响。在实验条件下,最佳操作参数为电流密度为65 mA / cm〜2,电极间隙的流速为2.6 cm / sec,初始氯离子浓度为5000 mg / L。处理1小时后,渗滤液中的COD可以降至100 mg / L以下。通过同时监测COD的变化和氯/次氯酸盐的产生,研究了COD去除的动力学和机理。 COD去除的动力学表现出两阶段动力学模型,而电生成的氯/次氯酸盐生成量的减少是第二阶段降低COD去除速率的主要机理。电极间隙的缩小有利于去除COD和降低能耗。

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