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首页> 外文期刊>Electrocatalysis >Role of Hydroxyl Radicals During the Competitive Electrooxidation of Organic Compounds on a Boron-Doped Diamond Anode
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Role of Hydroxyl Radicals During the Competitive Electrooxidation of Organic Compounds on a Boron-Doped Diamond Anode

机译:羟基自由基在掺硼金刚石阳极上有机化合物竞争性电氧化中的作用

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摘要

A numerical model has been developed to estimate the role of hydroxyl radicals in the competition of organic compounds during electrolysis using a boron-doped diamond (BDD) anode. It is well established that hydroxyl radicals are generated during water discharge. These radicals are free at the surface and act locally, their sphere of activity was estimated by the model to be 20 nm maximum from the anode. The implementation of the model taking account the presence of one and then two organic compounds in me solution can be used to predict the variation of the concentration of each organic with time during the electrolysis and their space profile in the electrochemical reactor too without using adjustable parameters. The role of hydroxyl radicals was highlighted in the competitive reaction with organics: the electrolysis of a solution containing an equimolar mixture of formic acid (FA) and maleic acid (MA) shows that FA oxidation only began when the MA had completely disappeared. The numerical model is in good agreement with the experiment and is thus suitable to describe the competition of two organics during electrolysis with a BDD anode.
机译:已经开发了一个数值模型来估计使用硼掺杂金刚石(BDD)阳极在电解过程中羟基自由基在有机化合物竞争中的作用。众所周知,在排水过程中会产生羟基自由基。这些自由基在表面是自由的,并在局部起作用,据模型估算,它们的活性范围距离阳极最大20 nm。考虑到溶液中存在一种然后两种有机化合物的模型的实现,可用于预测电解过程中每种有机物的浓度随时间的变化及其在电化学反应器中的空间分布,而无需使用可调参数。在与有机物的竞争反应中,羟基自由基的作用得到了突出:含有甲酸(FA)和马来酸(MA)等摩尔混合物的溶液的电解表明,FA氧化仅在MA完全消失时才开始。该数值模型与实验吻合良好,因此适合描述在用BDD阳极电解过程中两种有机物的竞争。

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