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Degradation Kinetics of Photoelectrocatalysis on Landfill Leachate Using Codoped TiO2/Ti Photoelectrodes

机译:双重TiO2 / Ti光电极垃圾渗滤液的降解动力学

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摘要

The photoelectrocatalytic (PEC) oxidation degradation of landfill leachate rejected by reverse osmosis (RO) using a Cu/N codoped TiO2/Ti photoelectrode was kinetically investigated in terms of COD concentration. The key factors affecting the reaction rate of PEC oxidation and the removal efficiency of COD concentration were studied, including the COD concentration of landfill leachate, potential bias applied, pH value of landfill leachate, and the reaction temperature of photoelectrocatalytic reactor. The apparent kinetic model was applied to describe the photoelectrocatalysis reaction. The results showed that the kinetic equation for photoelectrocatalytic oxidation of landfill leachate was fitting well with the experimental data (R2= 0.967~0.998), with average activation energy Ea= 6.35 × 104 J·mol−1. It was found that there was an optimal bias voltage of 20 V and low pH value was favorable for COD removal in landfill leachate. The reaction order of initial COD concentration (1.326) is higher than that of potential bias (1.102) and pH value (0.074), which indicates that the reaction rate can be controlled efficiently through adjusted initial concentration. The experiments demonstrated that potential bias would approach its statured value with increasing potential bias.
机译:渗滤液的光电催化(PEC)氧化劣化拒绝通过使用Cu / N反渗透(RO)共掺杂的TiO 2 / Ti的光电极在COD浓度方面被动力学研究。影响PEC氧化和COD浓度的去除效率的反应速率的关键因素进行了研究,包括垃圾渗沥液的COD浓度,电势偏压施加,垃圾渗沥液的pH值,和光电催化反应器的反应温度。表观动力学模型用于描述光电催化反应。结果表明,对于渗滤液的光电催化氧化的动力学方程与实验数据拟合以及(R2 = 0.967〜0.998),平均活化能E = 6.35×104·J·摩尔-1。据发现,有20 V和低pH值的最佳偏置电压是为COD去除渗滤液有利。初始COD浓度(1.326)的反应次序是比电位偏压(1.102)和pH值(0.074),这表明反应速率可有效地通过调整初始浓度来控制的更高。实验表明,潜在的偏见将接近随着潜在的偏见其statured价值。

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