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大气中氯菊酯的臭氧化反应:机理、动力学和毒性评价。

Ozonolysis of Permethrin in the Atmosphere: Mechanism, Kinetics, and Evaluation of Toxicity.

机构信息

Environment Research Institute, Shandong University, Qingdao 266237, P. R. China.

School of Environmental and Materials Engineering, Yantai University, Yantai 264005, P. R. China.

出版信息

J Phys Chem A. 2021 Sep 9;125(35):7705-7715. doi: 10.1021/acs.jpca.1c04812. Epub 2021 Aug 30.

Abstract

Pyrethroid, a pesticide widely used worldwide, could mimic, block, or synergize the effects of endogenous hormones in humans or mammals after entering into the atmosphere and after being sprayed and applied in large quantities. This research aims to study the mechanism, kinetics, and eco-toxicity evaluation of the ozonolysis of permethrin (PER)-one of the typical pyrethroid (type I) pesticides. Existing experimental studies only predicted that ozonolysis of PER could generate a cycloperoxy analogue of PER (IM13-1-11), and the reaction mechanism has not yet been completed. To make up for the lack of experimental results, the 13 primary reaction pathways of PER and ozone, as well as the subsequent reactions of Criegee intermediates with small molecules such as NO, CO, SO, and O, have been studied to propose new reaction paths by quantum chemical calculations in this work. We calculated the total reaction rate constant of PER and ozone at 298 K and 1 atm based on the calculated thermodynamic data and the transition state theory (TST), which was compared with the experimental values to prove the reliability of our results. Based on the quantitative structure and activity relationship, we predicted the acute and chronic toxicity of PER and its products of ozonolysis to three representative organisms-fish, daphnia, and green algae to avoid animal experiments. The results show that ozonolysis products of PER are still extremely harmful to the environment and should be taken seriously, although the products have less toxicity than PER.

摘要

拟除虫菊酯是一种在世界范围内广泛使用的农药,进入大气后,大量喷洒和使用后,可能会模拟、阻断或协同人体或哺乳动物内源性激素的作用。本研究旨在研究高效氯氟氰菊酯(PER)——一种典型的拟除虫菊酯(I 型)农药——臭氧化反应的机制、动力学和生态毒性评价。现有的实验研究仅预测了 PER 的臭氧化反应可能会生成 PER 的环过氧类似物(IM13-1-11),而反应机制尚未完成。为了弥补实验结果的不足,本工作通过量子化学计算研究了 PER 和臭氧的 13 条主要反应途径,以及 Criegee 中间体与小分子(如 NO、CO、SO 和 O)的后续反应,提出了新的反应途径。我们根据计算得到的热力学数据和过渡态理论(TST),计算了 298 K 和 1 atm 下 PER 和臭氧的总反应速率常数,并与实验值进行了比较,以证明我们结果的可靠性。基于定量结构-活性关系,我们预测了 PER 及其臭氧化产物对三种代表性生物(鱼类、水蚤和绿藻)的急性和慢性毒性,以避免动物实验。结果表明,尽管产物的毒性比 PER 低,但 PER 的臭氧化产物对环境仍然是极其有害的,应该引起重视。

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