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Influence of the electrolyte composition on the kinetics of the oxygen evolution reaction and ozone production processes

机译:电解质成分对氧释放反应动力学和臭氧产生过程的影响

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The influence of electrolyte composition (pure sulphuric or perchloric acid and their mixtures) on the kinetics of the oxygen evolution reaction (OER) and the electrochemical ozone production (EOP) on beta-PbO2 electrodes was investigated by electrochemical impedance spectroscopy and quasi-stationary polarisation curves. Analysis of the impedance spectra revealed a dependency of the electric double layer capacity and the adsorption pseudocapacitance, due to reaction intermediates, on electrolyte composition. The pseudocapacitance is a function of electrode potential and electrolyte composition, indicating the surface coverage by the reaction intermediates depends on these parameters. Tafel slope data support primary water discharge as rate determining step of the OER and EOP electrode processes. EOP current efficiency data (phiEOP) show pure electrolytes lead to maximum O3 production when compared to mixed electrolytes. According to the theoretical analysis of the electrode mechanism, this behaviour is a consequence of the reduction in surface concentration of the active centres leading to EOP caused by anion adsorption.
机译:通过电化学阻抗谱和准静态极化研究了电解质成分(纯硫酸或高氯酸及其混合物)对β-PbO2电极上放氧反应(OER)动力学和电化学臭氧产生(EOP)动力学的影响。曲线。阻抗谱的分析表明,由于反应中间体,双电层容量和吸附假电容与电解质组成有关。假电容是电极电势和电解质成分的函数,表明反应中间体的表面覆盖率取决于这些参数。塔菲尔斜率数据支持一次水排放,这是OER和EOP电极工艺的速率确定步骤。 EOP电流效率数据(phiEOP)显示,与混合电解质相比,纯电解质可产生最多的O3。根据电极机理的理论分析,此行为是由于阴离子吸附引起的导致EOP的活性中心表面浓度降低的结果。

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