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Performance of electrochemical oxidation and photocatalysis in terms of kinetics and energy consumption. New insights into the p-cresol degradation

机译:在动力学和能量消耗方面的电化学氧化和光催化性能。对甲酚降解的新见解

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摘要

This work reports the comparative performance of two Advanced Oxidation Processes (AOPs), electrochemical oxidation and photocatalysis, as individual technological alternatives for the treatment of effluents containing p-cresol. First, the influence of operating parameters in the oxidation and mineralization yield was carried out together with kinetic analysis. Boron Doped Diamond (BDD), RuO_2 and Pt as anodic materials, Na_2SO_4 and NaCl as supporting electrolytes and different current densities were evaluated in electrochemical oxidation whereas the effect of TiO_2 concentration and radiation was studied in the photocatalytic degradation. Then, the parameter Electrical Energy per Order (Eeo) was calculated to compare the energy consumption in both AOPs, concluding that under the studied conditions the electrochemical treatment with BDD, Na_2SO_4 and 125 A m~(-2) showed the best energy efficiency, with an E_(eo) of 5.83 kW h m~(-3) order~(-1) for p-cresol and 58.05 kW h m~(-3) order~(-1) for DOC removal, respectively.
机译:这项工作报告了两种先进的氧化工艺(AOP),电化学氧化和光催化的比较性能,这是处理含对甲酚废水的单独技术选择。首先,结合动力学分析进行了操作参数对氧化和矿化产率的影响。研究了硼掺杂金刚石(BDD),RuO_2和Pt作为阳极材料,Na_2SO_4和NaCl作为支持电解质以及不同电流密度在电化学氧化中的作用,而研究了TiO_2浓度和辐射对光催化降解的影响。然后,计算了每订单电能(Eeo)的参数,以比较两种AOP的能耗,从而得出结论:在研究条件下,用BDD,Na_2SO_4和125 A m〜(-2)进行的电化学处理显示出最佳的能源效率,对甲酚的E_(eo)分别为5.83 kW hm〜(-3)阶〜(-1)和DOC去除的58.05 kW hm〜(-3)阶〜(-1)。

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