首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >The mechanism of bound hydroxyl radical formation and degradation pathway of Acid Orange II in Fenton-like Co~(2+)-HCO3~-system
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The mechanism of bound hydroxyl radical formation and degradation pathway of Acid Orange II in Fenton-like Co~(2+)-HCO3~-system

机译:芬顿样Co〜(2 +)-HCO3〜-体系中酸性橙II结合羟基自由基形成及降解途径的机理

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摘要

The catalytic degradation of organic dyes with low cost Fenton-like systems over a wide pH range has become an object of numerous studies in the last two decades. Co~(2+)-HCO3-system has recently been demonstrated as a simple and efficient approach of acid orange II (AOII) decolorization, even in the presence of a significant amount of common anions in water. However, a detailed mechanism, especially the generation and action of reactive oxygen species (ROS), remains unclear. In this work, the oxidation-reduction cycle of Co~(2+) ions, the production of ROS and the formation of intermediate products were discussed, giving insight into the mechanistic details of the system. It was found that the bound HO radicals were produced as the main reactive species during Co(II) oxidation to Co(III) by H2O2. The radicals attacked the two C-N bonds in the azo dye simultaneously, leading to the decomposition of the dye into p-phenolsulfonic acid, 1,2-naphthaquinone and N2. The cobalt(III) species was not active, but its reduction was suggested to be the rate-limiting step for the reaction, during which O2~-radicals were formed and partly contributed to AOII decolorization.
机译:在过去的20年中,使用低成本的Fenton类系统在宽的pH范围内催化降解有机染料已成为众多研究的目标。 Co-(2 +)-HCO3-系统最近被证明是一种简单而有效的酸性橙II(AOII)脱色方法,即使在水中存在大量常见阴离子也是如此。但是,具体的机制,特别是活性氧(ROS)的产生和作用,尚不清楚。在这项工作中,讨论了Co〜(2+)离子的氧化还原循环,ROS的产生和中间产物的形成,从而深入了解了该系统的机械原理。发现在H 2 O 2将Co(II)氧化成Co(III)的过程中,结合的HO自由基作为主要的反应性物质而产生。自由基同时攻击偶氮染料中的两个C-N键,导致该染料分解为对苯酚磺酸,1,2-萘醌和N2。钴(III)物种没有活性,但它的还原被认为是反应的限速步骤,在此过程中形成了O2〜自由基,部分导致了AOII脱色。

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