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Phenol degradation on novel nickel-antimony doped tin dioxide electrode

机译:新型镍锑掺杂二氧化锡电极上的苯酚降解

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摘要

Nickel and antimony doped tin dioxide is a novel anodic material for its good performance of electrochemical ozone generation and direct electro-catalytic oxidation. Electro-catalytic oxidation of phenol on this novel nickel-antimony doped tin dioxide electrode is presented here. The morphology and composition of the electrode are characterized. The effects of applied current densities on phenol degradation rate, energy consumption and coulomb efficiency are discussed. In 0.1M sulfuric acid, after 4 h electrolysis with current density of 25mAcm~(-1), 90% phenol is removed. And with current density of 20mAcm~(-1), the highest energy efficiency of 6.85 g kWh~(-1) and the highest coulomb efficiency of 6.87mgC~(-1) are obtained. The effect of current densities on TOC removal is also discussed.
机译:镍和锑掺杂的二氧化锡是一种新型的阳极材料,具有良好的电化学臭氧产生性能和直接电催化氧化性能。本文介绍了在这种新型的镍-锑掺杂的二氧化锡电极上苯酚的电催化氧化。表征电极的形态和组成。讨论了施加的电流密度对苯酚降解率,能耗和库仑效率的影响。在0.1M硫酸中,以25mAcm〜(-1)的电流密度电解4 h后,去除了90%的苯酚。电流密度为20mAcm〜(-1)时,能量效率最高为6.85 g kWh〜(-1),库仑效率最高为6.87mgC〜(-1)。还讨论了电流密度对TOC去除的影响。

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