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在水生环境中杀虫剂氟虫腈的光降解:光脱氯过程和产物。

Photodegradation of the insecticide fipronil in aquatic environments: photo-dechlorination processes and products.

机构信息

Graduate School of Integrated Sciences for Life, Hiroshima University, 1-7-1 Kagamiyama, Higashi-Hiroshima, 739-8521, Japan.

Natural Science Center for Basic Research and Development, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, 739-8526, Japan.

出版信息

Environ Sci Pollut Res Int. 2023 Aug;30(38):89877-89888. doi: 10.1007/s11356-023-28571-0. Epub 2023 Jul 17.

Abstract

Fipronil (FIP) is a phenylpyrazole insecticide that, along with neonicotinoid insecticides, is regularly used worldwide. Photodegradation of FIP in aqueous systems is thought mainly to involve the reaction of desulfinylation to give fipronil desulfinyl (FIP-desulfinyl); however, little is known about further degradation reactions. We investigated FIP photodegradation by analyzing photodegradation products by liquid chromatography and liquid chromatography high-resolution tandem mass spectrometry using an Orbitrap instrument. A wide range of products, including dechlorinated compounds, was detected, and the structures were identified. FIP-desulfinyl has previously been found to be an important and persistent FIP photodegradation product; however, we also found that FIP-desulfinyl was photochemically decomposed to a didechlorinated product via a monodechlorinated product. The main photodegradation pathway was probably similar to that of ethiprole, which has a similar skeleton. The photodegradation rate constant was 22.6 times lower for FIP-desulfinyl (0.00372 min) than FIP (0.0839 min). The photodegradation rate constant was lower for the newly found didechlorinated product (0.001 min or below) than FIP-desulfinyl, suggesting that the product is persistent in aquatic environments and could be an important indicator of long-term FIP contamination.

摘要

氟虫腈(FIP)是一种苯吡唑类杀虫剂,与新烟碱类杀虫剂一起,在全球范围内被广泛使用。在水体系中,氟虫腈的光降解主要被认为涉及脱硫反应,生成氟虫腈脱磺酰基(FIP-desulfinyl);然而,对于进一步的降解反应知之甚少。我们通过分析液相色谱和液相色谱-高分辨串联质谱(使用 Orbitrap 仪器)得到的光降解产物,研究了氟虫腈的光降解。检测到了包括脱氯化合物在内的广泛产物,并鉴定了其结构。此前已发现 FIP-desulfinyl 是氟虫腈光降解的一个重要且持久的产物;然而,我们还发现 FIP-desulfinyl 可通过单脱氯产物光化学分解为二脱氯产物。主要的光降解途径可能与具有相似骨架的乙虫腈相似。FIP-desulfinyl 的光降解速率常数(0.00372 min)比 FIP(0.0839 min)低 22.6 倍。新发现的二脱氯产物的光降解速率常数(0.001 min 或更低)比 FIP-desulfinyl 低,表明该产物在水生环境中具有持久性,可能是长期 FIP 污染的一个重要指标。

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