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Electrochemical degradation of Reactive Brilliant Red K-2BP on Ti/RuTiIrSnMn oxide anode in a batch cell

机译:Ti / RuTiIrSnMn氧化物阳极在间歇式电池中对活性艳红K-2BP的电化学降解

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摘要

Electrochemical degradation of Reactive Brilliant Red K-2BP on Ti/RuTiIrSnMn oxide anode in chloride containing solution was investigated by voltammetry and electrolysis in a batch cell. It is found that the degradation mechanism of K-2BP on Ti/RuTiIrSnMn oxide anode involves an indirect electrocatalytic oxidation, in which K-2BP is oxidized by the electrochemically generated active chlorine. This degradation reaction follows pseudo-first order reaction kinetics. Ti/RuTiIrSnMn oxide exhibits excellent electrocata­lytic activity toward the generation of active chlorine from chloride. Hence, K-2BP can be electrochemically degraded effectively in chloride containing solution. The decolorization efficiency was found to increase with the decrease in pH and with the increase in current density, NaCl concentration, temperature, and flow rate of the solution.
机译:用伏安法和分批电解槽研究了含氯化物溶液中Ti / RuTiIrSnMn氧化物阳极上活性艳红K-2BP的电化学降解。发现K-2BP在Ti / RuTiIrSnMn氧化物阳极上的降解机理涉及间接电催化氧化,其中K-2BP被电化学产生的活性氯氧化。该降解反应遵循拟一级反应动力学。 Ti / RuTiIrSnMn氧化物对由氯化物生成活性氯具有优异的电催化活性。因此,可以在含氯化物的溶液中有效地电化学降解K-2BP。发现脱色效率随着pH的降低以及电流密度,NaCl浓度,温度和溶液流速的增加而增加。

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