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水中有机化学品氧化反应的定量构效关系

Quantitative structure-activity relationships for oxidation reactions of organic chemicals in water.

作者信息

Canonica Silvio, Tratnyek Paul G

机构信息

Swiss Federal Institute for Environmental Science and Technology (EAWAG) Ueberlandstrasse 133, CH-8600 Dübendorf, Switzerland.

出版信息

Environ Toxicol Chem. 2003 Aug;22(8):1743-54. doi: 10.1897/01-237.

Abstract

Even in the absence of microbiological mediation, oxidation is one of the most important chemical processes contributing to the degradation of organic contaminants in the aquatic environment. The oxidants that are responsible for these reactions include hydroxyl radical, carbonate radical, organic oxyl and peroxyl radicals, peroxides, excited triplet states of organic chromophores, singlet molecular oxygen, ozone, chlorine dioxide, permanganate, and chromate. Some of these oxidants contribute to natural attenuation of organic contaminants, but many are of greater interest because of their role in engineered remediation technologies. Kinetic studies of these processes have lead to numerous quantitative structure-activity relationships (QSARs). Many of these QSARs are simple empirical correlations to common convenient descriptor variables like Hammett constants (sigma), half-wave oxidation potentials (E1/2), energies of the highest occupied molecular orbital (E(HOMO)) or rate constants for other oxidation reactions. However, several environmentally relevant, aqueous-phase oxidation reactions have been described with QSARs based on theoretical models for electron transfer that were developed by Marcus-Hush and Rehm-Weller. This review summarizes many of the reported QSARs for aquatic oxidations of organic compounds with emphasis on the interrelation between traditional empirical models and the potential for future development of QSARs based on theoretical models.

摘要

即使在没有微生物介导的情况下,氧化也是导致水生环境中有机污染物降解的最重要化学过程之一。引发这些反应的氧化剂包括羟基自由基、碳酸根自由基、有机氧自由基和过氧自由基、过氧化物、有机发色团的激发三重态、单线态分子氧、臭氧、二氧化氯、高锰酸盐和铬酸盐。其中一些氧化剂有助于有机污染物的自然衰减,但许多因其在工程修复技术中的作用而更受关注。这些过程的动力学研究已得出大量定量结构-活性关系(QSARs)。许多这些QSARs是与常见的便利描述符变量(如哈米特常数(σ)、半波氧化电位(E1/2)、最高占据分子轨道能量(E(HOMO))或其他氧化反应的速率常数)的简单经验关联。然而,基于Marcus-Hush和ReReus和Rehm-Weller开发的电子转移理论模型,已经用QSARs描述了一些与环境相关的水相氧化反应。本综述总结了许多已报道的有机化合物水生氧化的QSARs,重点是传统经验模型之间的相互关系以及基于理论模型的QSARs未来发展的潜力。

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