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手性农药及其手性单体在水环境中的光化学行为和光诱导毒性。

Photochemical behavior and photo-induced toxicity of chiral pesticides and their chiral monomers in aqueous environment.

机构信息

State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Engineering Lab for Water Pollution Control and Resources Recovery, School of Environment, Northeast Normal University, Changchun, Jilin 130117, PR China.

State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Engineering Lab for Water Pollution Control and Resources Recovery, School of Environment, Northeast Normal University, Changchun, Jilin 130117, PR China.

出版信息

Environ Int. 2023 Jul;177:107996. doi: 10.1016/j.envint.2023.107996. Epub 2023 May 30.

Abstract

The photochemical behaviors of chiral pollutants in aqueous solutions are rarely studied using chiral monomers, which may hamper their precise risk assessment and lead to suspicious conclusions. In this study, we systematically investigated the phototransformation behavior and toxicity evolution of two widely used chiral pesticides (triadimefon (TF) and triadimenol (TN)) at enantiomer and diastereomer levels, and proposed a calculation method of total photolysis rate constants of chiral mixture. Results show that TF and TN could be photodegraded faster in pure water than in natural waters, and the observed photolysis rate constants (k) of TN with two chiral centers exhibit enantioselectivity, i.e., k(TN-RS) = k(TN-SR) > k(TN-RR) = k(TN-SS). The photolysis of TF and TN mainly occurs through their excited singlet and triplet states, respectively. Their photodegradation pathways mainly include dechlorination and elimination of triazole ring. TF could also undergo ether bond cleavage. It is also found that, both TF and TN exhibit photo-induced toxicity to V. fischeri, due to the generation of more toxic products than parent compounds. Furthermore, TN exhibits enantioselective photo-induced toxicity after 240-min irradiation, which could be ascribed to the formation of chiral products. These results could benefit the understanding of enantioselective environmental behavior of chiral pollutants.

摘要

在水溶液中,手性污染物的光化学行为很少用手性单体进行研究,这可能会阻碍其精确的风险评估并导致可疑的结论。在本研究中,我们系统地研究了两种广泛使用的手性农药(三唑酮(TF)和三唑醇(TN))在对映体和非对映体水平上的光转化行为和毒性演变,并提出了一种计算手性混合物总光解速率常数的方法。结果表明,TF 和 TN 在纯水中的光降解速度比在天然水中快,并且具有两个手性中心的 TN 的观察到的光解速率常数(k)表现出对映选择性,即 k(TN-RS) = k(TN-SR) > k(TN-RR) = k(TN-SS)。TF 和 TN 的光解主要通过它们的激发单线态和三线态分别进行。它们的光降解途径主要包括脱氯和三唑环的消除。TF 还可以经历醚键断裂。还发现,TF 和 TN 都会对发光菌(V. fischeri)产生光诱导毒性,这是由于生成了比母体化合物更具毒性的产物。此外,在 240 分钟的辐照后,TN 表现出对映选择性的光诱导毒性,这可归因于手性产物的形成。这些结果有助于理解手性污染物的对映体环境行为。

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