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首页> 外文期刊>Mutation research-Fundamental and Molecular Mechanisms of Mutagenesis >PbO2 electrodes prepared by pulse reverse electrodeposition and their application in benzoic acid degradation
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PbO2 electrodes prepared by pulse reverse electrodeposition and their application in benzoic acid degradation

机译:通过脉冲反向电沉积制备的PBO 2电极及其在苯甲酸降解中的应用

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摘要

In this work, PbO2 electrodes were prepared by pulse reverse current (PRC) electrodeposition. The effect of different duty cycles was investigated, which confirms that PRC deposition is an effective technique to optimize PbO2 electrodeposition. Surface morphologies and crystal structures of the PbO2 electrodes were characterized, and the voltammetric study was conducted to elucidate their electrochemical behavior. PRC deposition markedly changed the crystal structural and morphologic features of the resulting PbO2 electrodes, giving rise to the increased content of beta phase and a rough surface morphology. High-performance liquid chromatography (HPLC) was employed to monitor the galvanostatic electrolysis of benzoic acid (BA) occurring over the PbO2 electrodes. A pseudo first-order reaction was found to well fit these BA degradation reactions, and the highest degradation efficiency was observed for the PbO2 electrode made from 95% duty cycle. Concurrently, main aromatic intermediates and carboxylic acids generated in the BA degradation were identified, and a probable pathway was proposed for the BA degradation course on the PbO2 anode.
机译:在这项工作中,通过脉冲反向电流(PRC)电沉积来制备PBO2电极。研究了不同占用循环的效果,证实,PRC沉积是优化PbO2电沉积的有效技术。 PBO 2电极的表面形态和晶体结构的特征在于,进行伏安研究以阐明其电化学行为。 PRC沉积显着改变了所得PBO 2电极的晶体结构和形态学特征,从而产生β相增加的含量和粗糙的表面形态。采用高效液相色谱(HPLC)监测在PBO 2电极上发生的苯甲酸(BA)的渗透电解。发现伪第一阶反应很好地拟合这些BA降解反应,并且对于由95%的占空比制成的PbO 2电极观察到最高的降解效率。同时,鉴定了在BA降解中产生的主要芳族中间体和羧酸,并且提出了PBO 2阳极上的BA降解过程的可能途径。

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