Seto Inland Sea Carbon-Neutral Research Center, 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.
Environ Sci Pollut Res Int. 2024 Aug;31(40):53447-53457. doi: 10.1007/s11356-024-34767-9. Epub 2024 Aug 27.
Ethiprole (ETH) is a phenylpyrazole insecticide that is used worldwide as an alternative to fipronil (FIP). Research on the photodegradation of ETH in aquatic environments has been limited compared with that on FIP. In this study, to clarify the photodegradation of ETH in aquatic systems, the photodegradation pathway and products were investigated using liquid chromatography and liquid chromatography-tandem mass spectrometry. We also determined the photochemical half-lives (t) of ETH and its main degradation products. The primary photodegradation pathway was cyclization/dechlorination and hydroxylation/dechlorination of ETH to form the didechlorinated products (benzimidazole of des-chloro-hydroxy-ETH). Some newly identified photodegradation products and analogs of FIP photodegradation products were also detected as minor products. We compared the photodegradation of ETH with that of FIP under the same conditions. Didechlorinated products of ETH and FIP had the highest photostability. However, although the photochemical t of EHT was 2.7 times that of FIP, the photochemical t of the didechlorinated product of ETH was approximately one-third that of the didechlorinated product of FIP. This comparison of the photochemical processes of ETH and FIP provides new insight into the persistence and characteristics of both insecticides in the environment.
噻虫胺(ETH)是一种苯吡唑类杀虫剂,在世界范围内被用作替代氟虫腈(FIP)的杀虫剂。与氟虫腈相比,关于 ETH 在水生环境中光降解的研究还很有限。在这项研究中,为了阐明 ETH 在水生系统中的光降解情况,使用液相色谱和液相色谱-串联质谱法研究了 ETH 的光降解途径和产物。我们还测定了 ETH 及其主要降解产物的光化学半衰期(t)。ETH 的主要光降解途径是环化/脱氯和羟化/脱氯,形成双脱氯产物(去氯-羟-ETH 的苯并咪唑)。还检测到一些新鉴定的光降解产物和氟虫腈光降解产物的类似物作为次要产物。我们在相同条件下比较了 ETH 和 FIP 的光降解情况。ETH 和 FIP 的双脱氯产物具有最高的光稳定性。然而,尽管 EHT 的光化学 t 是 FIP 的 2.7 倍,但 ETH 的双脱氯产物的光化学 t 约为 FIP 的双脱氯产物的三分之一。对 ETH 和 FIP 的光化学过程的这种比较为这两种杀虫剂在环境中的持久性和特性提供了新的见解。