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Phototransformation of the insecticide fipronil: Identification of novel photoproducts and evidence for an alternative pathway of photodegradation

机译:杀虫剂氟虫腈的光转化:新型​​光产物的鉴定和光降解替代途径的证据

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Fipronil is a recently discovered insecticide of the phenylpyrazole series. It has a highly selective biochemical mode of action, which has led to its use in a large number of important agronomical, household, and veterinary applications. Previous studies have shown that, during exposure to light, fipronil is converted into a desulfurated derivative (desulfinyl-fipronil), which has slightly reduced insecticidal activity. In this study, the photodegradation of fipronil was studied in solution at low light intensities (sunlight or UV lamp). In addition to desulfinyl-fipronil, a large number of minor photoproducts were observed, including diversely substituted phenylpyrazole derivatives and aniline derivatives that had lost the pyrazole ring. Desulfinyl-fipronil itself was shown to be relatively stable under both UV light and sunlight, with only limited changes occurring in the substitution of the aromatic ring. Since this compound accumulated to levels corresponding to only 30-55% of the amount of fipronil degraded, it was concluded that one or more alternative pathways of photodegradation must be operating. On the basis of the structurally identified photoproducts, it is proposed that fipronil photodegradation occurs via at least two distinct pathways, one of which involves desulfuration at the 4-position of the pyrazole ring giving the desulfinyl derivative and the other of which involves a different modification of the 4-substituent, leading to cleavage of the pyrazole ring and the formation of aniline derivatives. The latter compounds do not accumulate to high levels and may, therefore, be degraded further. The ecological significance of these results is discussed, particularly with regard to the insecticidal activity of the photoproducts.
机译:Fipronil是最近发现的苯基吡唑系列杀虫剂。它具有高度选择性的生化作用模式,因此已在许多重要的农学,家庭和兽医应用中使用。先前的研究表明,在光照下,氟虫腈会转化为脱硫衍生物(去亚磺酰基-氟虫腈),其杀虫活性略有降低。在这项研究中,研究了氟虫腈在光强度低的溶液(日光或紫外线灯)中的光降解作用。除去甲亚砜基氟苯腈外,还观察到许多次要的光产物,包括失去吡唑环的各种取代的苯基吡唑衍生物和苯胺衍生物。已显示脱亚磺酰基氟虫腈本身在紫外线和日光下都相对稳定,在芳香环的取代中仅发生了有限的变化。由于该化合物的积累水平仅相当于氟虫腈降解量的30-55%,因此得出结论,必须使用一种或多种光降解途径。根据结构鉴定的光产物,提出氟虫腈的光降解通过至少两种不同的途径发生,一种途径涉及吡唑环的4-位脱硫,得到去亚磺酰基衍生物,另一种涉及不同的修饰。取代4-取代基,导致吡唑环断裂并形成苯胺衍生物。后面的化合物不会累积到很高的水平,因此可能会进一步降解。讨论了这些结果的生态意义,特别是关于光产物的杀虫活性。

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