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理解和优先考虑城市雨水和污水中的有机磷酸酯及其转化产物的生态影响的新视角。

New Perspective to Understand and Prioritize the Ecological Impacts of Organophosphate Esters and Transformation Products in Urban Stormwater and Sewage Effluents.

机构信息

State Key Laboratory of Marine Pollution and Department of Chemistry, City University of Hong Kong, City University of Hong Kong, Hong Kong SAR 999077, China.

National Observation and Research Station of Coastal Ecological Environments in Macao; Macao Environmental Research Institute, Faculty of Innovation Engineering, Macau University of Science and Technology, Macao SAR 999078, China.

出版信息

Environ Sci Technol. 2023 Aug 8;57(31):11656-11665. doi: 10.1021/acs.est.3c04159. Epub 2023 Jul 28.

Abstract

Due to their prevalence in urban contaminated water, the driving factors of organophosphate esters (OPEs) need to be well examined, and their related ecological impacts should include that of their transformation products (TPs). Additionally, a robust framework needs to be developed to integrate multiple variables related to ecological impacts for improving the ecological health assessment. Therefore, OPEs and TPs in urban stormwater and wastewater in Hong Kong were analyzed to fill these gaps. The results revealed that the total concentrations of OPEs in stormwater were positively correlated with the area of transportation land. Individual TP concentrations and the mass ratios of individual TPs/OPEs were somewhat higher in sewage effluents than that in stormwater. OPEs generally showed relatively higher risk quotients than TPs; however, the total risk quotients increased by approximately 38% when TPs were factored in. Moreover, the molecular docking results suggested that the investigated TPs might cause similar endocrine disruption in marine organisms as their parent OPEs. This study employed the Toxicological-Priority-Index scheme to successfully integrate the ecological risks and endocrine-disrupting effects to refine the ecological health assessment of the exposure to OPEs and their TPs, which can better inform the authority on the prioritization for regulating these contaminants of emerging concern in urban built environments.

摘要

由于有机磷酸酯 (OPEs) 在城市污染水中普遍存在,需要深入研究其驱动因素,并且应将其转化产物 (TPs) 的相关生态影响包括在内。此外,需要开发一个强大的框架,整合与生态影响相关的多个变量,以改善生态健康评估。因此,分析了香港城市雨水和污水中的 OPEs 和 TPs,以填补这些空白。结果表明,雨水中原位 OPEs 的总浓度与交通用地面积呈正相关。污水中个别 TPs 的浓度和个别 TPs/OPEs 的质量比略高于雨水。OPEs 的风险商通常高于 TPs;然而,当考虑 TPs 时,总风险商增加了约 38%。此外,分子对接结果表明,所研究的 TPs 可能会对海洋生物造成与母体 OPEs 相似的内分泌干扰。本研究采用毒性优先指数方案,成功地将生态风险和内分泌干扰效应纳入 OPEs 及其 TPs 的暴露生态健康评估中,以便更好地为管理城市建成环境中这些新兴关注污染物的优先级提供信息。

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