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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic activation of dioxygen to hydroxyl radical and efficient oxidation of o-aminophenol by cobalt(II) ions in bicarbonate aqueous solution
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Catalytic activation of dioxygen to hydroxyl radical and efficient oxidation of o-aminophenol by cobalt(II) ions in bicarbonate aqueous solution

机译:碳酸氢盐水溶液中钴(II)离子催化双氧激活为羟基自由基并有效氧化邻氨基苯酚

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摘要

Increasing attention has been paid to the activation of the ideal oxidant O2 to reactive oxygen species for environmental pollutants transformation and complete degradation. In this work, the oxidation of o-aminophenol (OAP), a poor biodegradable intermediate, by simple Co~(2+) ions in HCO_3~- aqueous solution with O2 under ambient conditions was investigated. The results reveal that OAP is efficiently transformed to a less harmful compound 2-aminophenoxazine-3-one (APZ) by the Co~(2+)-HCO_3~- system. HCO_3~- is necessary for the reaction by promoting the protonation of the two-electron reduction species of O2 to produce H2O2. The metal-bound hydroxyl radical (· OH) generated from the intermediacy of H2O2 contributes to APZ formation. Based on the analysis of electron spin resonance spin-trapping technologies, radical scavenging measurements and kinetics of APZ formation under different conditions, a possible pathway for · OH radical formation and APZ production is proposed. This study can provide new insight on the mechanism of the molecular oxygen activation by simple metal complexes and their application on pollutant removal under mil reaction conditions.
机译:人们已经越来越关注将理想的氧化剂O2活化为活性氧,以实现环境污染物的转化和完全降解。在这项工作中,研究了在环境条件下,H 2 O 3-水溶液中简单的Co〜(2+)离子与O2对O-氨基酚(OAP)(一种可生物降解的中间体)的氧化作用。结果表明,OAP被Co〜(2 +)-HCO_3〜-系统有效地转化为危害较小的化合物2-aminophenoxazine-3-one(APZ)。通过促进O2的两个电子还原物种的质子化来生成H2O2,HCO_3-是反应所必需的。由H2O2中间生成的与金属结合的羟基(·OH)有助于APZ的形成。在分析电子自旋共振自旋俘获技术,自由基清除测量和不同条件下APZ形成动力学的基础上,提出了·OH自由基形成和APZ生成的可能途径。该研究可以为简单金属络合物活化分子氧的机理及其在mil反应条件下去除污染物中的应用提供新的见解。

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