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大气中常用拟除虫菊酯与臭氧的非均相反应的产物和机制。

Products and mechanisms of the heterogeneous reactions of ozone with commonly used pyrethroids in the atmosphere.

机构信息

Aix Marseille Univ, CNRS, LCE, Marseille, France.

Aix Marseille Univ, CNRS, ICR, Marseille, France.

出版信息

Sci Total Environ. 2016 Dec 15;573:1287-1293. doi: 10.1016/j.scitotenv.2016.06.217. Epub 2016 Jul 9.

Abstract

The heterogeneous reactions of gas-phase ozone and two pyrethroid pesticides, deltamethrin and permethrin, which are the most frequently applied insecticides today, has been investigated. Tentative identifications of heterogeneous ozonolysis products of both pesticides reveal that the reaction mechanisms differ and are mainly influenced by the presence of the cyano moiety at the α-position of deltamethrin (pyrethroid type II). The mechanism study also suggests the important role of water. Finally, several of the degradation products emerged from the ozonolysis of deltamethrin and permethrin may pose further health and environmental hazard due to their higher toxicity, such as phosgene for permethrin, and bromophosgene, 3-phenoxybenzaldehyde (3-PBA) and fulminic acid for deltamethrin. The results obtained in this study can contribute to better describe the atmospheric fate of pesticides in the particle phase.

摘要

研究了气相臭氧与两种拟除虫菊酯农药(顺式氯氰菊酯和氯菊酯)的多相反应,这两种农药是当今应用最广泛的杀虫剂。对这两种农药的非均相臭氧化产物进行了初步鉴定,揭示了反应机制的不同,主要受顺式氯氰菊酯(拟除虫菊酯 II 型)α-位氰基的存在影响。该机理研究还表明水的重要作用。最后,由于其更高的毒性,如氯菊酯的光气,以及溴光气、3-苯氧基苯甲醛(3-PBA)和雷酸汞,顺式氯氰菊酯和氯菊酯的臭氧化产物中出现了几种可能进一步对健康和环境造成危害的降解产物。本研究的结果可以有助于更好地描述农药在颗粒相中大气的命运。

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