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Electrochemical Oxidation of Landfill Leachate: Investigation of Operational Parameters and Kinetics Using Graphite-PVC Composite Electrode as Anode

机译:垃圾渗滤液的电化学氧化:以石墨-PVC复合电极为阳极的操作参数和动力学研究

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The preparation of a new carbon composite electrode constructed from graphite-polyvinyl chloride (graphite-PVC) compressed mixtures was used for the first time to treat landfill leachate in Malaysia under electrochemical oxidation. The electrochemical oxidation of landfill leachate was studied on graphite-PVC and Pt electrodes as anode and cathode, respectively, with the presence of NaCl electrolyte in a batch electrochemical reactor. The highest chemical oxygen demand (COD) and color removals of 87% and 97%, respectively, were achieved at pH 3, 0.58% (m/v) + 2078 mg L-1 electrolyte concentration, 15 V applied voltage, and 105 min electrolysis time. To confirm electrochemical oxidation, a field emission scanning electron microscopy (FESEM) was used to evaluate the surface of graphite-PVC electrode before and after treatment. The constant rate in terms of pseudo-first-order kinetics increased from 0.0015 min-1 to 0.0186 min-1 at 5 and 20 V applied voltage. The graphite-PVC composite exhibits favorable qualities as an electrode material because of its mechanical resistance, low cost, simple preparation, and easy renewal of the electrode surface.
机译:首次使用由石墨-聚氯乙烯(石墨-PVC)压缩混合物制成的新型碳复合电极的制备,以在电化学氧化下处理马来西亚的垃圾渗滤液。在间歇式电化学反应器中,在存在NaCl电解质的情况下,分别在石墨-PVC和Pt电极上分别作为阳极和阴极,研究了垃圾渗滤液的电化学氧化。在pH 3、0.58%(m / v)+ 2078 mg L-1电解质浓度,15 V施加电压和105分钟的条件下,分别实现了最高的化学需氧量(COD)和脱色率分别为87%和97%。电解时间。为了确认电化学氧化,在处理之前和之后,使用场发射扫描电子显微镜(FESEM)评估石墨-PVC电极的表面。在5和20 V施加电压下,按拟一级动力学的恒定速率从0.0015 min-1增加到0.0186 min-1。石墨-PVC复合材料由于其机械电阻,低成本,制备简单和电极表面易于更新而表现出作为电极材料的良好品质。

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