首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Electrochemical study of carboxylic acids with Nb-supported boron doped diamond anode. Part 1: Potentiodynamic measurements and bulk oxidations
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Electrochemical study of carboxylic acids with Nb-supported boron doped diamond anode. Part 1: Potentiodynamic measurements and bulk oxidations

机译:羧酸用Nb载体掺杂金刚石阳极的电化学研究。 第1部分:电位动力学测量和散装氧化

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The present study was motivated by the reports that promote the use of boron doped diamond (BDD) anode for electrochemical oxidation (EO) of different organic compounds. EO approach on BDD proceeds via electrochemical generation (by water discharge) of hydroxyl radicals and their subsequent reactions. Although the discussion about the degradation of different organic compounds on Si-supported BDD anodes has been already reported; no attempts have been published about the electrochemical degradation of carboxylic acids (acetic, formic and oxalic acids) on Nb/BDD electrode. The interest to elucidate the mechanisms for removing carboxylic acids from water, as a model reaction, contributes to the understanding of more complex reactions involving organic pollutants. In this work, the results clearly demonstrate that organic molecules can be degraded in different way and level by using 0.25 M HClO4 as supporting electrolyte due to the oxidants electrochemically generated as well as the interaction of carboxylic acid with BDD surface by adsorbed/non-adsorbed intermediates. The direct evidence for these processes was found during potentiodynamic measurements and bulk electrolysis of carboxylic acids resulting in different evolution of organic matter removals. The strong oxidants as well as the oxidation potentials were analyzed by spin trapping and voltanunetry kinetic studies, respectively.
机译:目前的研究是由促进不同有机化合物的电化学氧化(EO)的硼掺杂金刚石(BDD)阳极的使用的报告。 BDD上的EO方法通过羟基自由基的电化学产生(通过排水)及其随后的反应进行。虽然已经报道了关于对Si负载的BDD阳极上不同有机化合物的降解的讨论;没有对Nb / Bdd电极上的羧酸(醋酸,甲酸和草酸)的电化学降解发表的尝试。阐明从水中除去羧酸的机制作为模型反应的兴趣有助于了解涉及有机污染物的更复杂的反应。在这项工作中,结果清楚地表明通过使用0.25M HClO4可以通过使用0.25M HClO4作为支撑电解质来降解有机分子由于电化学产生的氧化剂以及通过吸附/非吸附的BDD表面的羧酸与BDD表面的相互作用而降解中间体。在羧酸的电位测量和散装电解期间发现这些方法的直接证据导致有机物质除去的不同演化。通过分别通过旋转捕获和恒压动力学研究分析强氧化剂以及氧化电位。

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