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Acute Toxicity and Effects Analysis of Endosulfan Sulfate to Freshwater Fish Species

机译:硫丹硫酸盐对淡水鱼类的急性毒性和影响分析

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Endosulfan sulfate is a persistent environmental metabolite of endosulfan, an organochlorine insecticide–acaricide presently registered by the United States Environmental Protection Agency. There is, however, limited acute fish toxicity data for endosulfan sulfate. This study determines the acute toxicity (LC50s and LC10s) of endosulfan sulfate to three inland Florida native fish species (mosquitofish [Gambusia affinis]; least killifish [Heterandria formosa]; and sailfin mollies [Poecilia latipinna]) as well as fathead minnows (Pimephales promelas). Ninety-six-h acute toxicity tests were conducted with each fish species under flow-through conditions. For all of the above-mentioned fish species, 96-h LC50 estimates ranged from 2.1 to 3.5 μg/L endosulfan sulfate. The 96-h LC10 estimates ranged from 0.8 to 2.1 μg/L endosulfan sulfate. Of all of the fish tested, the least killifish appeared to be the most sensitive to endosulfan sulfate exposure. The above-mentioned data were combined with previous acute toxicity data for endosulfan sulfate and freshwater fish for an effects analysis. The effects analysis estimated hazardous concentrations expected to exceed 5, 10, and 50% of the fish species’ acute LC50 or LC10 values (HC5, HC10, and HC50). The endosulfan sulfate freshwater-fish acute tests were also compared with the available freshwater-fish acute toxicity data for technical endosulfan. Technical endosulfan is a mixture of α- and β-endosulfan. The LC50s had a wider range for technical endosulfan, and their distribution produced a lower HC10 than for endosulfan sulfate. The number of freshwater-fish LC50s for endosulfan sulfate is much smaller than the number available for technical endosulfan, reflecting priorities in examining the toxicity of the parent compounds of pesticides. The toxicity test results and effects analyses provided acute effect values for endosulfan sulfate and freshwater fish that might be applied in future screening level ecologic risk assessments. The effects analyses also discussed several deficiencies in conventional methods for setting water-quality criteria and determining ecologic effects from acute toxicity tests.
机译:硫酸硫丹是硫丹的一种持久性环境代谢产物,硫丹是一种有机氯杀虫剂和杀螨剂,目前已由美国环境保护署注册。但是,硫酸硫丹的急性鱼毒性数据有限。这项研究确定了硫丹硫酸盐对佛罗里达州三种内陆本地鱼类(蚊子[Gambusia affinis];最少杀鱼[Heterandria]的急性毒性(LC 50 s和LC 10 s)福尔摩沙(Fosa)和风帆(Poecilia latipinna)以及黑头min鱼(Pimephales promelas)。在流通条件下对每种鱼类进行了96小时的急性毒性试验。对于所有上述鱼类,96-h LC 50 估计值范围为2.1至3.5μg/ L硫酸硫丹。 96h LC 10 估计范围为0.8至2.1μg/ L硫酸硫丹。在所有测试的鱼中,最少的杀死鱼似乎对硫酸硫丹的暴露最敏感。将上述数据与硫丹硫酸盐和淡水鱼的先前急性毒性数据结合起来进行效果分析。效果分析估计,有害浓度预计将超过鱼类急性LC 50 或LC 10 (HC 5 ,HC 10 和HC 50 )。还将硫酸硫丹的淡水鱼急性试验与现有的工业硫丹的淡水鱼急性毒性数据进行了比较。工业硫丹是α-硫丹和β-硫丹的混合物。 LC 50 s对工业硫丹的范围更广,其分布产生的HC 10 比硫丹硫酸盐低。硫酸硫丹的淡水鱼LC 50 的数量比工业硫丹的数量少得多,这反映了在检查农药母体化合物毒性方面的优先考虑。毒性测试结果和效果分析提供了硫丹硫酸盐和淡水鱼的急性效应值,可用于将来的筛选水平生态风险评估。效果分析还讨论了设置水质标准和通过急性毒性试验确定生态效果的常规方法中的一些缺陷。

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