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首页> 外文期刊>The Science of the Total Environment >Toxicology and fate of Pestanal~® and commercial propetamphos formulations in river and estuarine sediment
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Toxicology and fate of Pestanal~® and commercial propetamphos formulations in river and estuarine sediment

机译:河流和河口沉积物中Pestanal〜®和市售Prophamphos制剂的毒理学和归宿

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To quantify the impact of organophosphate pesticides on aquatic ecosystems requires a mechanistic understanding of their behaviour in a range of environmental matrices. The objective of this study was to compare the sorption/desorption, biodegradation and toxic effects of the Pestanal~® grade and commercial formulation (Ectomort Centenary) of the organophosphate insecticide propetamphos in river and estuarine sediments. For both formulations, the sorption of propetamphos onto sediment was initially very rapid followed by a slower sorption phase. Similarly, the initial rate of desorption was rapid, followed by a much slower rate. In both sorption and desorption experiments, the level of sorbed propetamphos was considerably higher for the commercial formulation of propetamphos (K_d=7-11) than for the Pestanal~® grade (K_d=4-10). The rate of propetamphos biodegradation was sediment dependent but was most rapid where microbial activity and nutrients were the highest and sorption was the lowest. Propetamphos was more rapidly degraded in sediments under aerobic (t_(1/2)= 15 d) compared to anaerobic conditions (t_(1/2) = 19 d). However, no significant difference in the biodegradation rates of the Pestanal~® grade and commercial formulations of propetamphos were observed. The toxic effect of propetamphos on sediment microbial communities was significantly greater for the commercial formulation than for the Pestanal~® grade of propetamphos based on EC_(50) (21 versus 236 μg g~(-1)) and EC_(10) values (0.3 versus 54 μg g~(-1)). In conclusion, our results highlight the importance of using commercial pesticide formulations when carrying out ecotoxicological testing.
机译:要量化有机磷酸酯农药对水生生态系统的影响,需要对它们在一系列环境基质中的行为进行机械理解。本研究的目的是比较河流和河口沉积物中有机磷酸杀虫剂丙炔苯丙胺的Pestanal®®等级和商业配方(Ectomort Centenary)的吸附/解吸,生物降解和毒性作用。对于这两种配方,最初的吸附速度都非常快,随后是较慢的吸附阶段。类似地,最初的解吸速率很快,随后的速率则慢得多。在吸附和解吸实验中,商业配方的丙炔(K_d = 7-11)要比Pestanal®级(K_d = 4-10)的丙炔的吸附水平高得多。丙酸杆菌的生物降解速率取决于沉积物,但最快,微生物活性和养分最高,吸附最低。与有氧条件(t_(1/2)= 19 d)相比,有氧条件下(t_(1/2)= 15 d)Propetamphos在沉积物中的降解更快。但是,未观察到Pestanal?®级生物降解速率和商业上的丙炔苯丙醚配方。根据EC_(50)(21 vs 236μgg〜(-1)和EC_(10)值,商业配方中丙酸杆菌对沉积微生物群落的毒性作用明显强于Pestanal〜级丙酸杆菌(21 vs 236μgg(-1))( 0.3对54μgg〜(-1))。总之,我们的结果突出了进行生态毒理学测试时使用商业农药制剂的重要性。

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