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Ozonation of secondary treated wastewater reduces ecotoxicity to Gammarus fossarum (Crustacea; Amphipoda): Are loads of (micro)pollutants responsible?

机译:二次处理废水的臭氧化可降低对镰刀菌(甲壳纲;两栖类)的生态毒性:负载的(微量)污染物是否负责?

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摘要

Ozone application is an effective tool to reduce loads of (micro)pollutants in wastewater, however, its ecotoxicological implications are largely unknown. Therefore, the feeding rates of a leaf-shredding invertebrate (Gammarus fossarum) exposed to secondary (=non-ozone) or ozone treated wastewater were investigated to assess potential ecotoxicological effects. Two repetitive experiments resulted in significantly higher feeding rates for gam-marids exposed to ozone compared to non-ozone treated wastewater sampled from a treatment plant equipped with a full-scale ozonation. A further experiment confirmed these results also for wastewater from the same treatment plant, when ozonation was conducted at the lab-scale. However, the deviations in dissolved organic carbon profiles of ozone and non-ozone wastewater did not seem to be the driving factor for the effects observed. Two additional experiments displayed on the one hand a higher feeding rate of G. fossarum if exposed to ten-fold enriched eluates from solid phase extraction cartridges loaded with ozone compared to non-ozone treated wastewater. On the other hand, the mean feeding rate of gammarids exposed to non-ozone treated wastewater, which contained hardly any (micro)pollutants (i.e. Pharmaceuticals), was at the same level as wastewater from the same source additionally treated with ozone. These results suggest that not an alteration in the organic matrix but a reduction in the load of micropollutants most likely triggered the effects in the bioassay applied. Hence, the feeding rate of G. fossarum appears to be a well-suited bioassay to indicate alterations in ecotoxicological properties of wastewater due to the application of advanced oxidation processes like ozonation.
机译:臭氧的应用是减少废水中(微)污染物负荷的有效工具,但是,其生态毒理学意义尚不清楚。因此,研究了暴露于次级(=非臭氧)或臭氧处理的废水中的切叶无脊椎动物(伽马鲁斯镰刀虫)的进料速率,以评估其潜在的生态毒理作用。两次重复实验得出的结果是,与从配有全面臭氧处理设施的污水处理厂采样的未经臭氧处理的废水相比,暴露在臭氧中的gam-maris的进料速率明显更高。当在实验室规模进行臭氧化处理时,进一步的实验证实了对于同一处理厂的废水也具有这些结果。但是,臭氧和非臭氧废水的溶解有机碳分布的偏差似乎并不是观察到的影响的驱动因素。与未经臭氧处理的废水相比,另一方面,另外两项实验表明,如果暴露于装有臭氧的固相萃取小柱中浓缩液的十倍浓缩液中,草的进料速率更高。另一方面,暴露于未经臭氧处理的废水(几乎不含任何(微)污染物(即药物))的γ-甲酰胺的平均进料速率与经臭氧处理的同一来源的废水处于同一水平。这些结果表明,不是有机基质的改变,而是微污染物负荷的减少最有可能触发所应用生物测定法的影响。因此,镰刀菌的进料速率似乎是一种非常合适的生物测定方法,表明由于采用了高级氧化工艺(如臭氧氧化),废水的生态毒理学特性发生了变化。

著录项

  • 来源
    《Water Research》 |2011年第13期|p.3999-4007|共9页
  • 作者

    Mirco Bundschuh; Rolf Schulz;

  • 作者单位

    Institute for Environmental Sciences, University of Koblenz-Landau, Landau Campus, Fortstrasse 7, D-76829 Landau, Germany;

    Institute for Environmental Sciences, University of Koblenz-Landau, Landau Campus, Fortstrasse 7, D-76829 Landau, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pharmaceuticals; ozone; by-products; solid phase extraction; gammarus; feeding assay;

    机译:药品;臭氧;副产品;固相萃取伽玛喂养测定;
  • 入库时间 2022-08-17 13:48:22

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