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Small but with big impact? Ecotoxicological effects of a municipal wastewater effluent on a small creek

机译:小但受到很大的影响?一个小溪城市废水污水的生态毒理学效应

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Municipal wastewater treatment plants (WWTPs) discharge micropollutants like pharmaceuticals, pesticides, personal care products or endocrine disrupting chemicals but also nutrients. Both can adversely influence the freshwater ecosystem and may finally affect the ecological conditions. Many studies focus on the potential impact of large WWTPs even if smaller ones are more common, often less efficient and discharge into small creeks or the upper reaches of rivers. As a result, the receiving waters are characterized by relatively high shares of treated wastewater. Thus, the primary objective of this study was to investigate the ecotoxicological effects of a small WWTP on freshwater amphipods and mollusks in a small creek using an active and passive monitoring approach, accompanied by laboratory experiments (LE). In vitro assays with recombinant yeasts and the microtox assay with Aliivibrio fischeri were performed in parallel to determine the endocrine potential and the baseline toxicity. The evaluation of the effects of the analysed WWTP was possible due to its shutdown during our study and the application of the same in vivo and in vitro assays before and after the shutdown. During the operation of the WWTP the discharge of treated wastewater caused significantly higher mortalities and lower reproduction of the anaylsed invertebrates in the active and passive montoring as well as in the LEs. Furthermore, the amphipod species assemblage in the creek was affected downstream of the WWTP effluent. Besides, the endocrine activity and baseline toxicity were significantly higher downstream of the effluent. After the shutdown of the WWTP, the in vitro activity levels and adverse in vivo effects in the receiving water recovered quickly with no significant differences downstream of the former WWTP effluent compared to the upstream station. Furthermore, the previously disturbed amphipod species assemblage recovered significantly with a shift in favor of Gammarus fossarum downstream of the effluent. These biological results are consistent with a marked decline by 81.5% for the detected micropollutants in the receiving creek after the shutdown which points to a prominent role of micropollutants for the observed effects.
机译:市政废水处理厂(WWTPS)放电微污染物,如药品,杀虫剂,个人护理产品或内分泌造成化学物质,但也营养。两者都可能对淡水生态系统产生不利影响,最终可能影响生态条件。许多研究侧重于大型WWTPS的潜在影响,即使更小的更常见,通常效率低,越过小溪或河上游。结果,接收水的特征在于经处理的废水的相对高份。因此,本研究的主要目标是使用实验室实验(LE)伴随着具有主动和被动的监测方法的小溪淡水两种对淡水两种和软体动物的生态毒理学作用。用重组酵母的体外测定和用Aliivibio Fischeri的微量毒素测定并行进行,以确定内分泌潜力和基线毒性。由于在我们的研究期间关闭,并且在关闭之前和之后的体内和体外测定中的施加,因此可以进行分析的WWTP的效果。在WWTP的运作过程中,处理过的废水的排放造成显着更高的死亡,并且在活跃的和被动蒙太孔中以及在LES中的Anaylsed无脊椎动物的再现。此外,溪里的Amphipod物种组合在WWTP流出物的下游受影响。此外,污水下游内分泌活性和基线毒性显着高。在关闭WWTP后,体外活性水平和在接收水中的体内效应的不利效果迅速回收,与上游站相比,前型WWTP流出物下游无显着差异。此外,先前受干扰的Amphipod物种组合显着回收,随着流出物下游的γ骨质的转变而显着回收。这些生物学结果与检测到的小溪中的术语微塑料明显下降81.5%,在关机后,对于观察到的效果的突出作用。

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