Activation of Peroxymonosulfate by Benzoquinone: A Novel Nonradical Oxidation Process

化学 单线态氧 苯醌 光化学 猝灭(荧光) 分解 电子顺磁共振 质谱法 催化作用 电泳剂 激进的 二恶烷 过氧化氢异丙苯 反应机理 单重态 羟基自由基 氧气 有机化学 荧光 色谱法 量子力学 核物理学 核磁共振 激发态 物理
作者
Yang Zhou,Jin Jiang,Yuan Gao,Jun Ma,Su–Yan Pang,Juan Li,Xueting Lu,Lipeng Yuan
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:49 (21): 12941-12950 被引量:1271
标识
DOI:10.1021/acs.est.5b03595
摘要

The reactions between peroxymonosulfate (PMS) and quinones were investigated for the first time in this work, where benzoquinone (BQ) was selected as a model quinone. It was demonstrated that BQ could efficiently activate PMS for the degradation of sulfamethoxazole (SMX; a frequently detected antibiotic in the environments), and the degradation rate increased with solution pH from 7 to 10. Interestingly, quenching studies suggested that neither hydroxyl radical (•OH) nor sulfate radical (SO4•-) was produced therein. Instead, the generation of singlet oxygen (1O2) was proved by using two chemical probes (i.e., 2,2,6,6-tetramethyl-4-piperidinol and 9,10-diphenylanthracene) with the appearance of 1O2 indicative products detected by electron paramagnetic resonance spectrometry and liquid chromatography mass spectrometry, respectively. A catalytic mechanism was proposed involving the formation of a dioxirane intermediate between PMS and BQ and the subsequent decomposition of this intermediate into 1O2. Accordingly, a kinetic model was developed, and it well described the experimental observation that the pH-dependent decomposition rate of PMS was first-order with respect to BQ. These findings have important implications for the development of novel nonradical oxidation processes based on PMS, because 1O2 as a moderately reactive electrophile may suffer less interference from background organic matters compared with nonselective •OH and SO4•-.
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