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表征受雨水影响的城市流域中生物衰退的化学特征。

Characterizing the Chemical Profile of Biological Decline in Stormwater-Impacted Urban Watersheds.

机构信息

Center for Urban Waters, 326 East D St., Tacoma, Washington 98421, United States.

Interdisciplinary Arts and Sciences, University of Washington Tacoma, 1900 Commerce St., Tacoma, Washington 98402, United States.

出版信息

Environ Sci Technol. 2022 Mar 1;56(5):3159-3169. doi: 10.1021/acs.est.1c08274. Epub 2022 Feb 15.

Abstract

Chemical contamination is an increasingly important conservation issue in urban runoff-impacted watersheds. Regulatory and restoration efforts typically evaluate limited conventional parameters and pollutants. However, complex urban chemical mixtures contain hundreds to thousands of organic contaminants that remain unidentified, unregulated, and poorly understood. This study aimed to develop broadly representative metrics of water quality impairment corresponding to previously documented biological degradation along gradients of human impacts. Stream samples ( = 65, baseflow/rainfall conditions, 2017-2018) were collected from 15 regional watersheds (Puget Sound, WA, USA) across an urbanization gradient defined by landscape characteristics. Surface water chemical composition characterized via non-targeted high-resolution mass spectrometry (7068 detections) was highly correlated with landscape-based urbanization gradient ( < 0.01) and season ( < 0.01). Landscape-scale changes in chemical composition closely aligned with two anchors of biological decline: coho salmon () mortality risk ( < 0.001) and loss of stream macroinvertebrate diversity and abundance ( < 0.001). We isolated and identified 32 indicators for urban runoff impacts and corresponding receiving water ecological health, including well-known anthropogenic contaminants (e.g., caffeine, organophosphates, vehicle-derived chemicals), two related environmental transformation products, and a novel (methoxymethyl)melamine compound. Outcomes support data-directed selection of next-generation water quality indicators for prioritization and evaluation of watershed management efforts intended to protect aquatic ecosystems.

摘要

化学污染是城市径流影响流域中一个日益重要的保护问题。监管和恢复工作通常评估有限的常规参数和污染物。然而,复杂的城市化学混合物含有数百到数千种未被识别、未被监管和了解甚少的有机污染物。本研究旨在开发广泛代表性的水质受损指标,以对应先前记录的生物降解沿人类影响梯度的情况。从美国华盛顿州普吉特海湾的 15 个区域流域(2017-2018 年,基流/降雨条件)采集了溪流样本(=65 个),这些流域跨越了由景观特征定义的城市化梯度。通过非靶向高分辨率质谱法(7068 个检测)对地表水化学成分进行了特征描述,与基于景观的城市化梯度(<0.01)和季节(<0.01)高度相关。化学成分的景观尺度变化与生物衰退的两个标志密切一致:银大麻哈鱼(Oncorhynchus kisutch)死亡率风险(<0.001)和溪流大型无脊椎动物多样性和丰度的丧失(<0.001)。我们分离并鉴定了 32 种用于城市径流影响和相应受纳水生态健康的指标,包括众所周知的人为污染物(如咖啡因、有机磷、车辆衍生化学品)、两种相关的环境转化产物以及一种新型(甲氧基甲基)三聚氰胺化合物。研究结果支持基于数据的选择下一代水质指标,以优先考虑和评估旨在保护水生生态系统的流域管理工作。

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