The photoreactivity of chlorothalonil was studied by means of steady-state irradiation and laser-flash photolysis. Experiments were conducted in water containing acetonitrile as a co-solvent. This fungicide undergoes very slow phototransformation in the first stages of the reaction, but the consumption profile is auto-accelerated. To understand the reaction mechanism, we undertook a detailed study of the rates, products and transient species. The rates and photoproduct distribution vary greatly with the oxygen concentration. Concerning the transient species, we measured the absorption of the triplet, its yield of formation, and its reactivity with oxygen in various water-acetonitrile mixtures and with isopropanol. The reduced radical, CTH˙, could be produced and its transient spectrum was recorded. Combining all the experimental data, it is hypothesized that in the first step of the reaction CT is excited to the triplet state. The triplet has several possible fates including reduction by organic constituents to form the radical which gives photoproducts. Another characteristic of the CT triplet is its capacity to generate singlet oxygen. The production of this species was measured by phosphorescence and compared to the percentage of the triplet trapped by oxygen in air-saturated solutions. The yield varies from 0.88 in pure acetonitrile to 0.48 in water-acetonitrile (95 : 5, v/v). Therefore, in surface waters, chlorothalonil is expected to sensitize the photooxidation of micropollutants, and to be competitively phototransformed through reaction with any H donor or electron donor water constituents.

译文

通过稳态辐射和激光闪光光解研究了百菌清的光反应。实验是在含有乙腈作为共溶剂的水中进行的。这种杀菌剂在反应的第一阶段经历非常缓慢的光转化,但是消耗曲线是自动加速的。为了了解反应机理,我们对反应速率,产物和瞬态物种进行了详细研究。速率和光产物分布随氧气浓度的变化而变化很大。关于瞬态物质,我们测量了三重态的吸收,其形成率以及在各种水-乙腈混合物和异丙醇中与氧的反应性。可以产生还原的自由基cth ˙,并记录其瞬态光谱。结合所有实验数据,假设在反应的第一步,CT被激发为三重态。三重态有几种可能的命运,包括通过有机成分的还原形成产生光产物的自由基。CT三重态的另一个特征是它产生单线态氧的能力。通过磷光测量该物种的产量,并将其与空气饱和溶液中氧气捕获的三重态的百分比进行比较。产率从纯乙腈中的0.88到水-乙腈中的0.48 (95 :  5,v/v) 变化。因此,在地表水中,百菌清有望使微污染物的光氧化敏感,并通过与任何H供体或电子供体水成分的反应竞争性光转化。

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