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法国南部罗纳河三角洲的农药副产物。4-氯-2-甲基苯酚及其硝基衍生物的案例。

Pesticide by-products in the Rhône delta (Southern France). The case of 4-chloro-2-methylphenol and of its nitroderivative.

作者信息

Chiron Serge, Comoretto Laetitia, Rinaldi Elisabetta, Maurino Valter, Minero Claudio, Vione Davide

机构信息

Laboratoire Chimie Provence, Aix-Marseille Universités-CNRS (UMR 6264), Marseille, France.

出版信息

Chemosphere. 2009 Jan;74(4):599-604. doi: 10.1016/j.chemosphere.2008.09.012. Epub 2008 Nov 8.

Abstract

A field monitoring campaign for pesticides and their transformation intermediates was carried out in the Rhône delta (Southern France). It was evidenced the following transformation sequence: MCPA-->4-chloro-2-methylphenol (CMP)-->4-chloro-2-methyl-6-nitrophenol (CMNP). Interestingly CMP disappeared about as quickly as MCPA, while CMNP was environmentally more persistent than the parent molecules. This is very relevant to the environmental risk associated with the occurrence of these compounds, because the nitration of chlorophenols reduces their acute toxicity but the nitroderivatives could have more marked long-term effects, associated with their genotoxicity. Irradiation experiments suggested that the photonitration of CMP into CMNP involves nitrogen dioxide, generated from the photolysis of nitrate and from the photooxidation of nitrite by ()OH. The photochemistry of Fe(III) species could also play a significant role, but its contribution is still difficult to be quantified. Another important intermediate of CMP transformation is methylnitrophenol (MNP), produced via a dechlorination/nitration pathway, with ortho-cresol as the most likely reaction intermediate.

摘要

在罗纳河三角洲(法国南部)开展了一项针对农药及其转化中间体的实地监测活动。结果表明存在以下转化顺序:灭草灵→4-氯-2-甲基苯酚(CMP)→4-氯-2-甲基-6-硝基苯酚(CMNP)。有趣的是,CMP消失的速度与灭草灵大致相同,而CMNP在环境中的持久性比母体分子更强。这与这些化合物的环境风险密切相关,因为氯酚的硝化作用会降低其急性毒性,但硝基衍生物可能具有更显著的长期影响,与其遗传毒性有关。辐照实验表明,CMP光硝化生成CMNP涉及二氧化氮,其由硝酸盐的光解以及(·)OH对亚硝酸盐的光氧化产生。铁(III)物种的光化学也可能起重要作用,但其贡献仍难以量化。CMP转化的另一个重要中间体是甲基硝基苯酚(MNP),它通过脱氯/硝化途径生成,邻甲酚是最可能的反应中间体。

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