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农药在植物叶片上的光转化:以磺草酮为例。

Phototransformation of pesticides on plant leaves: the case of sulcotrione.

作者信息

Ter Halle Alexandra, Wiszniowski Jaroslaw, Richard Claire

机构信息

Laboratoire de Photochimie Moléculaire et Macromoléculaire, UMR CNRS 6505, FR-63177 Aubière Cedex, France.

出版信息

Commun Agric Appl Biol Sci. 2007;72(2):45-52.

Abstract

Photochemistry is one of the main ways of pollutants degradation in the environment. There is an obvious lack of data concerning the photostability of agrochemicals on plant foliage. We report here the first photodegradation study of a triketonic herbicide (sulcotrione) used as a substitute of atrazine. To mimic surface Leaves, we used films made of carnauba grey wax or of cuticular wax extracted from maize Leaves. Under simulated solar light, sulcotrione was rapidly phototyzed. The phototysis was much faster on cuticular wax films than in aqueous phase. Moreover, the formulated sulcotrione (Mikado) disappeared even more quickly than the pure active ingredient. Sulcotrione mainly underwent an intramolecular cyclization. To validate these observations, sulcotrione and its main photoproduct were monitored after maize field treatment. The day after the treatment the main photoproduct was detected on the maize leaves and suLcotrione had already significantly disappeared. This experiment demonstrates that phototysis can be a relevant process in real conditions after field treatment.

摘要

光化学是环境中污染物降解的主要方式之一。目前关于农用化学品在植物叶片上的光稳定性的数据明显不足。我们在此报告了对用作阿特拉津替代品的三酮类除草剂(磺草酮)的首次光降解研究。为了模拟叶片表面,我们使用了由巴西棕榈灰蜡或从玉米叶片中提取的角质蜡制成的薄膜。在模拟太阳光下,磺草酮迅速发生光解。在角质蜡膜上的光解比在水相中快得多。此外,制剂磺草酮(米卡多)消失得比纯活性成分更快。磺草酮主要发生分子内环化。为了验证这些观察结果,在玉米田处理后对磺草酮及其主要光产物进行了监测。处理后的第二天,在玉米叶片上检测到了主要光产物,而磺草酮已经显著消失。该实验表明,光解在田间处理后的实际条件下可能是一个相关过程。

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