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Matrix composition during ozonation of N-containing substances may influence the acute toxicity towards Daphnia magna

机译:在含N个物质的臭氧化过程中的基质组合物可能影响Daphnia Magna的急性毒性

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摘要

Micropollutants reach the aquatic environment through wastewater treatment plant effluents. Ozonation, applied in wastewater treatment for micropollutants abatement, can yield transformation products (TP), which might be of ecotoxicological concern. Previous studies on TP formation were mostly performed in ultrapure water. However, the water matrix can have a substantial influence and lead to unpredictable yields of TPs with toxicological potential. In this study the acute toxicity (immobilization) of the parent substances (isoproturon and metoprolol) and also of available TPs of isoproturon, metoprolol and diclofenac towards Daphnia magna (D. magna) were investigated. Further, the acute toxicity of TP mixtures, formed during ozonation of isoproturon, metoprolol and diclofenac was evaluated in the following systems: in the presence of radical scavengers (tert-butanol and dimethyl sulfox-ide) and in the presence of hypobromous acid (HOBr), a secondary oxidant in ozonation. For all tested substances and TP standards, except 2,6-dichloroaniline (EC_(50) 1.02 mg/L (48 h)), no immobilization of D. magna was detected. Ozonated pure water and wastewater did not show an immobilization effect either. After ozonation of diclofenac in the presence of dimethyl sulfoxide 95% (48 h) of the daphnids were immobile. Ozonation of parent substances, after the reaction with HOBr, showed no effect for isoproturon but a high effect on D. magna for diclofenac (95% immobilization (48 h)) and an even higher effect for metoprolol (100% immobilization (48 h)). These results emphasize that complex water matrices can influence the toxicity of TPs as shown in this study for D. magna.
机译:微核性通过废水处理厂的流出物到达水生环境。臭氧化物,用于微润湿性的废水处理,可以产生转化产品(TP),这可能具有生态毒理学关注。以前关于TP形成的研究主要是在超纯水中进行的。然而,水基质可以具有显着的影响,导致具有毒理学潜力的TP的不可预测的产量。在这项研究中,研究了母体物质(Isoproturon和Metopolol)的急性毒性(固定化)和Isproturon,MetoPolol和双氯芬酸的可用TPS朝向Daphnia Magna(D. Magna)。此外,在下列系统中评估了在异丙脲,氟托洛尔和双氯芬酸的臭氧化合物中形成的TP混合物的急性毒性:在存在自由基清除剂(叔丁醇和二甲基磺砜)和下甲酸存在(HOBR ),臭氧化中的次氧化剂。对于所有测试的物质和TP标准标准,除2,6-二氯甲酸(EC_(50)1.02mg / L(48小时))外,检测到D. MAGNA的固定化。臭氧化的纯净水和废水也没有显示出固定效果。在二甲基甲醚在二甲基亚甲醚的情况下臭氧化之后,Daphnids的二甲基亚砜95%(48小时)是不动的。与HOBR反应后的母体物质的臭氧含量对异丙仑的影响没有作用,但对双氯芬酸的D. MAGNA(95%固定(48小时))和均多托洛尔(100%固定(48小时)效果的高效果)。这些结果强调复杂的水基质可以影响TPS的毒性,如本研究所述的D. Magna所示。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|142727.1-142727.10|共10页
  • 作者单位

    Instrumental Analytical Chemistry University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany Centre for Water and Environmental Research (ZWU) University of Duisburg-Essen Universitaetsstr. 2 45141 Essen Germany;

    Instrumental Analytical Chemistry University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany;

    Centre for Water and Environmental Research (ZWU) University of Duisburg-Essen Universitaetsstr. 2 45141 Essen Germany Aquatic Ecology University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany;

    Instrumental Analytical Chemistry University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany Centre for Water and Environmental Research (ZWU) University of Duisburg-Essen Universitaetsstr. 2 45141 Essen Germany Technical University Darmstadt Franziska-Braun-Straβe 3 64287 Darmstadt Germany IWW Water Centre Moritzstraβe 26 45476 Muelheim an der Ruhr Germany;

    Centre for Water and Environmental Research (ZWU) University of Duisburg-Essen Universitaetsstr. 2 45141 Essen Germany Aquatic Ecology University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany;

    Instrumental Analytical Chemistry University of Duisburg-Essen Universitaetsstr. 5 45141 Essen Germany Centre for Water and Environmental Research (ZWU) University of Duisburg-Essen Universitaetsstr. 2 45141 Essen Germany IWW Water Centre Moritzstraβe 26 45476 Muelheim an der Ruhr Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Daphnia magna; Isoproturon; Diclofenac; Metoprolol; Wastewater;

    机译:Daphnia magna;Isoproturon;双氯芬酸;美容;废水;

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