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A brief review of the environmental fate and metabolism of pyrethroids

机译:拟除虫菊酯的环境归宿与代谢研究进展

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AbstractPyrethroids are a class of lipophilic insecticide very easily degraded in the natural environment. The two main routes of degradation, photo‐ and biodegradation, are often superimposed. Pyrethroids developed for use in agriculture are much more photostable than the natural pyrethrins or early synthetic derivatives but they are still sensitive to sunlight, which triggers many alterations such as isomerisation or ester cleavage. The basic pathways of pyrethroid metabolism include hydrolysis of the central ester linkage and oxidation of both acid and alcohol moieties. The rate of these metabolic transformations and the nature of the metabolites depend mainly on the organism involved. Birds and mammals metabolise and excrete more rapidly than insects and fishes. In plants, initial metabolic processes are identical to those known in animals. In soil, pyrethroids undergo the same type of transformation, hydrolysis and oxidation. Neither degradation products nor intact parent compounds are leache
机译:摘要拟除虫菊酯类是一类亲脂性杀虫剂,在自然环境中极易降解。降解的两种主要途径,光降解和生物降解,通常是叠加在一起的。为农业而开发的拟除虫菊酯比天然除虫菊酯或早期合成衍生物具有更高的光稳定性,但它们仍然对阳光敏感,这会引发许多变化,例如异构化或酯裂解。拟除虫菊酯代谢的基本途径包括中心酯键的水解以及酸和醇部分的氧化。这些代谢转化的速率和代谢物的性质主要取决于所涉及的生物体。鸟类和哺乳动物的代谢和排泄速度比昆虫和鱼类快。在植物中,初始代谢过程与动物中已知的代谢过程相同。在土壤中,拟除虫菊酯经历相同类型的转化、水解和氧化。降解产物和完整的母体化合物都不会浸出

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