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臭氧的反应产物:综述

Reaction products of ozone: a review.

作者信息

Glaze W H

出版信息

Environ Health Perspect. 1986 Nov;69:151-7. doi: 10.1289/ehp.8669151.

Abstract

The reaction products of ozone that form during the oxidation of compounds found in aqueous media are reviewed. Reaction products of ozone are well documented only for a limited number of substrates, and mechanistic information is quite rare. Decomposition of ozone during its reactions, sometimes induced by matrix impurities or by the by-products of the reactions, will generate highly reactive hydroxyl radicals. Thus, even reactions occurring at pH less than 7 may have radical character. More complete destruction of organic substrates may be enhanced by using catalysts, such as ultraviolet radiation or hydrogen peroxide, to accelerate radical formation. However, complete mineralization is generally not practical economically, so partially oxidized by-products can be expected under typical treatment conditions. Ozone by-products tend to be oxygenated compounds that are usually, but not always, more biodegradable and less toxic than xenobiotic precursors. Of particular interest are hydroperoxide by-products, which may have escaped detection because of their lability, and unsaturated aldehydes. Inorganic by-products tend to be in high oxidation states, which in some cases (e.g., some metallic elements) may lead to enhanced removal by flocculation and sedimentation. In other cases oxidation may lead to formation of reactive species such as hypobromous acid from bromide ion or permanganate from manganous ion. In general, more research is required before a valid assessment of the risks of ozone by-products can be made.

摘要

本文综述了在水介质中化合物氧化过程中形成的臭氧反应产物。目前仅对有限数量的底物有关于臭氧反应产物的充分记录,且机理信息相当稀少。臭氧在反应过程中的分解,有时由基质杂质或反应副产物引发,会产生高活性的羟基自由基。因此,即使在pH小于7的条件下发生的反应也可能具有自由基特征。使用催化剂(如紫外线辐射或过氧化氢)加速自由基形成,可增强有机底物的更彻底破坏。然而,完全矿化在经济上通常不可行,所以在典型处理条件下可预期会产生部分氧化的副产物。臭氧副产物往往是含氧化合物,通常但并非总是比外源生物前体更易生物降解且毒性更小。特别值得关注的是氢过氧化物副产物,由于其不稳定性可能未被检测到,以及不饱和醛。无机副产物往往处于高氧化态,在某些情况下(如某些金属元素)可能导致通过絮凝和沉淀增强去除效果。在其他情况下,氧化可能导致形成活性物种,如由溴离子形成次溴酸或由锰离子形成高锰酸盐。一般而言,在能够对臭氧副产物的风险进行有效评估之前,还需要更多研究。

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