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Response of the zooplankton community and environmental fate of perfluorooctane sulfonic acid in aquatic microcosms.

机译:水生微观世界中浮游动物群落的反应和全氟辛烷磺酸的环境命运。

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摘要

Little is known regarding perfluorooctane sulfonic acid (PFOS) toxicity to freshwater organisms. This field evaluation aims to assess the toxicological risk associated with exposure to PFOS across levels of biological organization. The analysis of variance study was conducted in replicate (n = 3) 12,000 L outdoor microcosms. Multivariate techniques were used to assess the response of zooplankton community structure and dynamics, as well as a floating macrophyte, Lemna gibba. The zooplankton community was significantly affected (p < 0.05) by the treatment regime given by the Monte Carlo permutations for all sampling times. A community-level no-observable-effect concentration ([NOEC]community) of 3.0 mg/L was determined for the 35-day study, however, longer term studies are recommended. The most sensitive taxonomic groups, Cladocera and Copepoda, were virtually eliminated in 30 mg/L treatments after 7 d. The 42-d 50% inhibition concentration (IC50) for L. gibba frond number was 19.1 mg/L and the NOEC was0.2 mg/L. Furthermore, we investigated the persistence of PFOS over 285 d in microcosms under natural conditions. Perfluorooctane sulfonic acid concentration showed no drastic reduction in any treatment microcosm over the entire study period, confirming that this compound undergoes little degradation in aquatic systems. Presently, there appears to be little hazard to these freshwater organisms at reported environmental concentrations.
机译:关于全氟辛烷磺酸(PFOS)对淡水生物的毒性知之甚少。这项现场评估旨在评估生物组织各层面与全氟辛烷磺酸接触相关的毒理学风险。方差分析的研究是在重复(n = 3)12,000 L室外微观世界中进行的。多变量技术用于评估浮游动物群落结构和动力学的响应,以及漂浮的大型植物Lemna gibba。浮游生物群落受到所有采样时间的蒙特卡罗排列所赋予的治疗方案的显着影响(p <0.05)。在为期35天的研究中,确定了3.0 mg / L的社区级不可观察效应浓度([NOEC]社区),但是,建议进行更长期的研究。 7 d后,在30 mg / L处理中,最敏感的生物分类群Cladocera和Copepoda被消除。吉氏乳杆菌叶数的42-d 50%抑制浓度(IC50)为19.1 mg / L,NOEC为0.2 mg / L。此外,我们在自然条件下的微观世界中研究了全氟辛烷磺酸在285 d内的持久性。在整个研究期间,全氟辛烷磺酸的浓度在任何处理的缩影中均没有显着降低,这证明该化合物在水生系统中几乎没有降解。目前,在所报告的环境浓度下,似乎对这些淡水生物几乎没有危害。

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