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Electro-Fenton-Like Reactions of Transition Metal Ions with Electrogenerated Hydrogen Peroxide

机译:用电流过氧化氢的过渡金属离子的电芬顿的反应

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We evaluated and compared the hydroxyl radical-generating ability of chromium, iron, cobalt, nickel, copper, lanthanum, and cerium ions when reacted with electrogenerated hydrogen peroxide by usage the voltammetry. There was reproduced an electro-Fenton-like reaction in electrochemical cell when metal salt added. The nature of metal ions determined the appearance and increasing of current of hydroxyl radicals cathodic reduction due to individual rate of the redox cycling of metal ions with ongoing cathodic regeneration of Fenton-active metal ions oxidation state. The approximated current magnitude growth in relation to metal ions concentration was calculated for each tested metal. It expressed in μA? ml μmol~(-1) and is equal to HO'-generating ability of metal ions. Results are usable for improvement of advanced oxidation processes (AOPs) through enhancement of exploitation of electro-Fenton-like processes with selecting metals that are more active. Besides, in accordance with concept of metal-induced hydroxyl radical stress in biological systems, the hydroxyl radical-generating ability of metal ions is equal to their pro-oxidant capacity.
机译:我们评估并比较了铬,铁,钴,镍,铜,镧和铈离子的羟基自由基产生能力,当用伏安法用电化过氧化氢反应时。当加入金属盐时,在电化学电池中再现了电化学电池的电芬恒反应。金属离子的性质确定了羟基自由基电流的外观和增加由于金属离子的氧化还原循环的单独速率,具有芬顿活性金属离子氧化态的持续的阴极再生。计算每个测试金属的与金属离子浓度相关的近似的电流幅度生长。它以μa表示? MLμmol〜(-1)等于金属离子的HO'产生能力。结果可用于通过提高电源性型工艺的利用具有更活跃的金属来改善高级氧化过程(AOP)。此外,根据生物系统中金属诱导的羟基胁迫的概念,金属离子的羟基自由基产生能力等于其促氧化剂能力。

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