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Treatment Performance Evaluation of Chemical Oxygen Demand from Landfill Leachate by Electro-Coagulation and Electro-Fenton Technique

机译:电凝聚-Fenton技术处理垃圾渗滤液化学需氧量的处理性能评价

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The removal of chemical oxygen demand (COD) from landfill leachate by electro-coagulation (EC) using iron sacrificial anode has been investigated. The process performance is analyzed in terms of COD removal efficiency and the important costrelated parameters such as electrode and energy consumptions, as a function of initial pH, conductivity, current density, and operation time. The optimum COD removal (65.85%) was obtained with typical operating conditions: current density, 30 mA/cm~2; operation time, 180 min; conductivity, 16.4 ms/cm; and initial pH, 6.54. At these conditions, the electrode and energy consumptions during the electrolysis were determined as 0.418 kg COD/kg Al and 11.092 kWh/kg COD, respectively. In addition, the EC and Fenton processes are applied together referred to as the electro-Fenton process in the literature for the removal of COD from landfill leachate and effect of operation time and hydrogen peroxide concentration is examined. The process was very fast in the first 15 min, and then it slowed down till it was complete in 60 min. An optimum COD removal efficiency of 74.21% was obtained at 5000 ppm hydrogen peroxide dosage and 60 min.
机译:研究了使用铁牺牲阳极通过电凝(EC)从垃圾渗滤液中去除化学需氧量(COD)。根据COD去除效率和重要的成本相关参数(例如电极和能耗)来分析过程性能,这些参数是初始pH,电导率,电流密度和操作时间的函数。在典型的工作条件下可获得最佳的COD去除率(65.85%):电流密度30 mA / cm〜2;手术时间180分钟;电导率16.4 ms / cm;初始pH为6.54。在这些条件下,电解期间的电极和能量消耗分别确定为0.418 kg COD / kg Al和11.092 kWh / kg COD。另外,在文献中将EC和Fenton工艺一起应用,称为电Fenton工艺,用于从垃圾渗滤液中去除COD,并研究了操作时间和过氧化氢浓度的影响。此过程在开始的15分钟内非常快,然后放慢速度,直到60分钟内完成。在5000 ppm过氧化氢剂量和60分钟条件下,最佳COD去除效率为74.21%。

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