Department of Environmental Sciences , The Connecticut Agricultural Experiment Station , 123 Huntington Street , P.O. Box 1106, New Haven , Connecticut 06504 , United States.
Environ Sci Technol. 2018 May 15;52(10):5911-5919. doi: 10.1021/acs.est.8b00735. Epub 2018 Apr 26.
Peroxymonosulfate (HSO and PMS) is an optional bulk oxidant in advanced oxidation processes (AOPs) for treating wastewaters. Normally, PMS is activated by the input of energy or reducing agent to generate sulfate or hydroxyl radicals or both. This study shows that PMS without explicit activation undergoes direct reaction with a variety of compounds, including antibiotics, pharmaceuticals, phenolics, and commonly used singlet-oxygen (O) traps and quenchers, specifically furfuryl alcohol (FFA), azide, and histidine. Reaction time frames varied from minutes to a few hours at pH 9. With the use of a test compound with intermediate reactivity (FFA), electron paramagnetic resonance (EPR) and scavenging experiments ruled out sulfate and hydroxyl radicals. Although O was detected by EPR and is produced stoichiometrically through PMS self-decomposition, O plays only a minor role due to its efficient quenching by water, as confirmed by experiments manipulating the O formation rate (addition of HO) or lifetime (deuterium solvent isotope effect). Direct reactions with PMS are highly pH- and ionic-strength-sensitive and can be accelerated by (bi)carbonate, borate, and pyrophosphate (although not phosphate) via non-radical pathways. The findings indicate that direct reaction with PMS may steer degradation pathways and must be considered in AOPs and other applications. They also signal caution to researchers when choosing buffers as well as O traps and quenchers.
过一硫酸氢盐(HSO 和 PMS)是高级氧化工艺(AOPs)中处理废水的可选氧化剂。通常,PMS 通过输入能量或还原剂来激活,以生成硫酸根或羟基自由基或两者兼而有之。本研究表明,未经明确激活的 PMS 会与多种化合物直接反应,包括抗生素、药物、酚类化合物以及常用的单线态氧(O)捕获剂和猝灭剂,特别是糠醇(FFA)、叠氮化物和组氨酸。在 pH 9 下,反应时间从几分钟到几个小时不等。使用具有中等反应性的测试化合物(FFA),电子顺磁共振(EPR)和清除实验排除了硫酸根和羟基自由基。尽管 EPR 检测到了 O,并通过 PMS 自分解产生了化学计量的 O,但由于其被水有效猝灭,因此 O 仅起次要作用,这通过操纵 O 生成速率(添加 HO)或寿命(氘溶剂同位素效应)的实验得到了证实。与 PMS 的直接反应高度依赖于 pH 值和离子强度,可以通过(生物)碳酸盐、硼酸盐和焦磷酸盐(尽管不是磷酸盐)通过非自由基途径加速。这些发现表明,与 PMS 的直接反应可能会影响降解途径,在 AOPs 和其他应用中必须加以考虑。它们还向研究人员发出警告,在选择缓冲液以及 O 捕获剂和猝灭剂时要谨慎。