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Electrochemical degradation of levodopa with modified PbO2 electrode: Parameter optimization and degradation mechanism

机译:修饰的PbO2电极对左旋多巴的电化学降解:参数优化及降解机理

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摘要

Electrochemical degradation of levodopa in aqueous solution was investigated over PbO2 electrode, La-PbO2 electrode, Gd-PbO2 electrode and La-Gd-PbO2 electrode. The degradation efficiencies of these four electrodes were investigated and it was found that the catalytic effect decreased in the following order: La-Gd-PbO2 electrode > La-PbO2 electrode > Gd-PbO2 electrode > PbO2 electrode. The main influencing factors on electrochemical decomposition of levodopa over La-Gd-PbO2 electrode were evaluated as a function of electrolyte concentration, initial levodopa concentration and current density. The results indicated that the maximum removal of levodopa, COD and TOC reached 100%, 79.20% and 65.31% respectively, after 120 min electrolysis at an initial 100 mg L~(-1) levodopa concentration at constant current density of 50 mA cm~(-2) with a 0.1 mol L~(-1) Na2SO4 supporting electrolyte solution. The degradation mechanism of levodopa in electrochemical oxidation system is analyzed and a possible degradation pathway for the anodic oxidation of levodopa is proposed based on the intermediates identified.
机译:研究了PbO2电极,La-PbO2电极,Gd-PbO2电极和La-Gd-PbO2电极对左旋多巴在水溶液中的电化学降解。研究了这四个电极的降解效率,发现催化效果按以下顺序降低:La-Gd-PbO2电极> La-PbO2电极> Gd-PbO2电极> PbO2电极。评估了左旋多巴在La-Gd-PbO2电极上电化学分解左旋多巴的主要影响因素与电解质浓度,初始左旋多巴浓度和电流密度的关系。结果表明,在100 mA L〜(-1)左旋多巴的初始浓度,50 mA cm〜的恒定电流密度下电解120分钟后,左旋多巴,COD和TOC的最大去除率分别达到100%,79.20%和65.31%。 (-2)用0.1 mol L〜(-1)Na2SO4支持电解质溶液。分析了左旋多巴在电化学氧化系统中的降解机理,并基于所鉴定的中间体,提出了左旋多巴阳极氧化的可能降解途径。

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