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Electrocatalytic degradation kinetic of 4-chlorophenol by the Pd/C gas-diffusion electrode system

机译:Pd / C气体扩散电极系统对4-氯苯酚的电催化降解动力学

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A Pd/C gas-diffusion cathode which generated H_2O_2 through a two-electron reduction process of fed oxygen molecule was used to degrade 4-chlorophenol in an undivided electrolysis device. The kinetics of 4-chlorophenol degradation has been investigated by the electrochemical oxidation processes. By inspecting the relationship between the rate constants (k) and influencing factors, using first-order kinetics to describe the electrochemical oxidation process of 4-chlorophenol, a kinetic model of 4-chlorophenol degradation process was proposed to calculate the 4-chlorophenol effluent concentration: C = C_0exp(-3.7610~(-6)C_0 ~(-05) J~2 M~(-07) Q~(017)Dt). It was found that the electrocatalytic degradation rate of 4-chlorophenol was affected by current density, electrode distance, air-feeding rate, electrolyte concentration and initial 4-chlorophenol concentration. The kinetics obtained from the experiments under corresponding electrochemical conditions could provide an accurate estimation of 4-chlorophenol effluent concentration and lead to better design of the electrochemical reactor.
机译:Pd / C气体扩散阴极通过进料的氧分子的两电子还原过程生成H_2O_2,用于在不分隔的电解装置中降解4-氯苯酚。已经通过电化学氧化方法研究了4-氯苯酚降解的动力学。通过考察速率常数(k)与影响因素之间的关系,利用一级动力学描述4-氯苯酚的电化学氧化过程,提出了4-氯苯酚降解过程的动力学模型,以计算4-氯苯酚的出水浓度。 :C = C_0exp(-3.7610〜(-6)C_0〜(-05)J〜2 M〜(-07)Q〜(017)Dt)。发现4-氯苯酚的电催化降解速率受电流密度,电极距离,空气进料速率,电解质浓度和初始4-氯苯酚浓度的影响。在相应的电化学条件下从实验中获得的动力学可以提供4-氯苯酚流出物浓度的准确估计,并可以更好地设计电化学反应器。

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