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Comparative toxicity of imidacloprid, of its commercial liquid formulation and of diazinon to a non-target arthropod, the microcrustacean Daphnia magna

机译:吡虫啉,其市售液体制剂和地嗪酮对非目标节肢动物微甲壳类蚤的毒性

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Imidacloprid (IMI) is at the moment the insecticide with the world's fastest growing sales and is considered possible replacement for the widely used organophosphorus pesticide, diazinon, which is subject to phased revocation in many countries. In this study, biochemical, reproductive and survival parameters of the water flea (Daphnia magna) after chronic exposure to IMI, its commercial liquid formulation Confidor SL 200 and diazinon are presented and compared. According to the lowest observed effect concentrations, diazinon is more toxic to the reproduction of D. magna than IMI and Confidor SL 200, which exert similar toxicity. The same was observed for the survival, except that Confidor SL 200 is more toxic than IMI. In polluted aquatic environments, the actual levels of diazinon are potentially chronically hazardous to the reproduction of D. magna (risk quotient > 1). According to very few measured environmental levels of IMI, the latter is not expected to be chronically hazardous, unless it is accidentally spilled in a small pond. In such case, the predicted concentrations of IMI would present a potential chronic risk to D. magna, and a potential acute risk to other aquatic invertebrates. In the future, higher environmental levels of IMI are expected due to its increasing use and physico-chemical properties. The literature survey summarized in this work suggests that further ecotoxicological studies with a broader spectrum of aquatic organisms are needed before IMI is classified as safer than currently applied pesticides.
机译:吡虫啉(IMI)目前是世界上销售增长最快的杀虫剂,被认为是可能被广泛使用的有机磷农药二嗪农的替代品,该农药在许多国家都被分阶段吊销。在这项研究中,提出并比较了长期暴露于IMI,商业液体制剂Confidor SL 200和二嗪农后水蚤(Daphnia magna)的生化,生殖和存活参数。根据观察到的最低作用浓度,二嗪农对D. magna的繁殖比IMI和Confidor SL 200具有更大的毒性,后者具有相似的毒性。除了Confidor SL 200的毒性比IMI毒性大以外,在存活率方面也观察到了相同的结果。在受污染的水生环境中,二嗪农的实际含量可能长期有害于D. magna的繁殖(风险商> 1)。根据很少测量的IMI环境水平,除非IMI意外地洒在小池塘中,否则它不会造成长期危害。在这种情况下,IMI的预测浓度将对D. magna造成潜在的慢性风险,而对其他水生无脊椎动物则造成潜在的急性风险。未来,由于IMI的使用量和理化性质不断提高,预计其环境水平将更高。在这项工作中总结的文献调查表明,在将IMI归类为比目前使用的农药更安全之前,需要对更广泛的水生生物进行进一步的生态毒理学研究。

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