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监测水生环境中受关注的新兴污染物:展示应用基于效应的措施的研究综述。

Monitoring of emerging contaminants of concern in the aquatic environment: a review of studies showing the application of effect-based measures.

机构信息

School of Biotechnology, Dublin City University Glasnevin, Dublin 9, Dublin, Ireland.

Water Institute, Dublin City University, Dublin, Ireland.

出版信息

Anal Methods. 2021 Nov 11;13(43):5120-5143. doi: 10.1039/d1ay01184g.

Abstract

Water scarcity is increasingly a global cause of concern mainly due to widespread changes in climate conditions and increased consumptive water use driven by the exponential increase in population growth. In addition, increased pollution of fresh water sources due to rising production and consumption of pharmaceuticals and organic chemicals will further exacerbate this concern. Although surface water contamination by individual chemicals is often at very low concentration, pharmaceuticals for instance are designed to be efficacious at low concentrations, creating genuine concern for their presence in freshwater sources. Furthermore, the additive impact of multiple compounds may result in toxic or other biological effects that otherwise will not be induced by individual chemicals. Globally, different legislative frameworks have led to pre-emptive efforts which aim to ensure good water ecological status. Reports detailing the use and types of effect-based measures covering specific bioassay batteries that can identify specific mode of actions of chemical pollutants in the aquatic ecosystem to evaluate the real threat of pollutants to aquatic lives and ultimately human lives have recently emerged from monitoring networks such as the NORMAN network. In this review, we critically evaluate some studies within the last decade that have implemented effect-based monitoring of pharmaceuticals and organic chemicals in aquatic fauna, evaluating the occurrence of different chemical pollutants and the impact of these pollutants on aquatic fauna with special focus on pollutants that are contaminants of emerging concern (CEC) in urban wastewater. A critical discussion on studies that have used effect-based measures to assess biological impact of pharmaceutical/organic compound in the aquatic ecosystem and the endpoints measurements employed is presented. The application of effect-based monitoring of chemicals other than assessment of water quality status is also discussed.

摘要

水资源短缺日益成为全球关注的主要问题,主要原因是气候条件广泛变化以及人口增长带来的耗水量增加。此外,由于药品和有机化学品产量和消费的增加,导致淡水资源污染加剧,这将进一步加剧这一问题。尽管个别化学物质对地表水的污染浓度通常非常低,但药品的设计初衷就是在低浓度下有效,这确实令人担忧它们会出现在淡水资源中。此外,多种化合物的附加影响可能导致毒性或其他生物效应,而这些效应在单个化学物质中不会产生。在全球范围内,不同的立法框架已经导致了先发制人的努力,旨在确保良好的水生态状况。最近,从 NORMAN 等监测网络中涌现出详细报告,介绍了使用和基于效应的具体生物测定电池的措施类型,这些措施可以识别化学污染物在水生生态系统中的特定作用模式,以评估污染物对水生生物乃至人类生命的实际威胁。在这篇综述中,我们批判性地评估了过去十年中在水生动物中实施基于效应的药物和有机化学物质监测的一些研究,评估了不同化学污染物的出现情况以及这些污染物对水生动物的影响,特别关注城市废水中新兴关注污染物 (CEC) 的污染物。本文还对使用基于效应的措施评估水生生态系统中药物/有机化合物的生物影响以及所采用的终点测量的研究进行了批判性讨论。还讨论了化学物质的基于效应监测的应用,而不仅仅是水质状况的评估。

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