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Multispecies toxicity test for silver nanoparticles to derive hazardous concentration based on species sensitivity distribution for the protection of aquatic ecosystems

机译:基于物种敏感性分布的银纳米颗粒的多物种毒性测试,以得出有害浓度,以保护水生生态系统

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With increasing concerns about the release of silver nanoparticles (AgNPs) into the environment and the risks they pose to ecological and human health, a number of studies of AgNP toxicity to aquatic organisms have been conducted. USEPA and EU JRC have published risk assessment reports for AgNPs. However, most previous studies have focused on the adverse effects of AgNPs on individual species. Hazardous concentration (HC) of AgNPs for protection of aquatic ecosystems that are based on species sensitivity distributions (SSDs) have not yet been derived because sufficient data have not been available. In this study, we conducted multispecies toxicity tests, including acute assays using eight species from five different taxonomic groups (bacteria, algae, flagellates, crustaceans and fish) and chronic assays using six species from four different taxonomic groups (algae, flagellates, crustaceans and fish). Using the results of these assays, we used a SSD approach to derive an AgNP aquatic HC5 (Hazard concentrations at the 5% species) of 0.614 mu g/L. To our knowledge, this is the first report of a proposed HC of AgNPs for the protection of aquatic ecosystems that is based on SSDs and uses chronic toxicity data.
机译:随着人们越来越关注银纳米颗粒(AgNPs)向环境中的释放以及它们对生态和人类健康构成的风险,已经进行了许多有关AgNP对水生生物毒性的研究。 USEPA和EU JRC已发布AgNP的风险评估报告。但是,以前的大多数研究都集中在AgNP对单个物种的不利影响上。由于尚未获得足够的数据,尚未得出基于物种敏感性分布(SSD)的用于保护水生生态系统的AgNP的危险浓度(HC)。在这项研究中,我们进行了多物种毒性测试,包括使用来自五个不同分类组(细菌,藻类,鞭毛,甲壳类和鱼类)的八种物种进行的急性分析,以及使用来自四个不同分类组(藻类,鞭毛,甲壳类和鱼类的六种物种)的慢性分析。鱼)。使用这些测定的结果,我们使用SSD方法得出的AgNP水生HC5(5%物种的危害浓度)为0.614μg / L。据我们所知,这是拟议的用于保护水生生态系统的AgNPs HC的首次报告,该报告基于SSD并使用了慢性毒性数据。

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