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不止是初次冲刷:城市溪流暴雨径流水文图展示了广泛的污染物污染图。

More Than a First Flush: Urban Creek Storm Hydrographs Demonstrate Broad Contaminant Pollutographs.

机构信息

Center for Urban Waters, Tacoma, Washington 98421 United States.

Interdisciplinary Arts and Sciences, University of Washington Tacoma, Tacoma, Washington 98421 United States.

出版信息

Environ Sci Technol. 2020 May 19;54(10):6152-6165. doi: 10.1021/acs.est.0c00872. Epub 2020 May 5.

Abstract

Stormwater runoff clearly impacts water quality and ecological health of urban receiving waters. Subsequent management efforts are often guided by conceptual models of contaminant "first flushes", defined by disproportionate concentrations or mass loads early in the storm hydrograph. However, studies examining the dynamics of contaminant transport and receiving water hydrology have primarily focused on "traditional" stormwater contaminants and point sources, with less evaluation of chemically complex nonpoint pollution sources. Accordingly, we conducted baseflow and storm sampling in Miller Creek, a representative small, urban watershed in the Puget Sound region (WA, USA). We comprehensively characterized organic contaminant profiles and dynamics via targeted quantification of 35 stormwater-derived chemicals, complementary nontarget HRMS analyses, and surrogate chemical metrics of ecological health. For quantified analytes, total daily baseflow loads were 0.8-3.4 g/day and storm event loads were ∼80-320 g/storm (∼48 h interval), with nine contaminants detected during storms at >500 ng/L. Notably, urban creek "pollutographs" were much broader than relatively sharp storm hydrographs and exhibited transport-limited (rather than mass-limited) source dynamics, with immediate water quality degradation during low-intensity precipitation and continued mobilization of contaminant mass across the entire hydrograph. Study outcomes support prioritization of source identification and focused stormwater management efforts to improve water quality and promote ecosystem function in small urban receiving waters.

摘要

雨水径流显然会影响城市受纳水体的水质和生态健康。随后的管理工作通常以污染物“初次冲刷”的概念模型为指导,该模型定义为暴雨洪水过程中早期不成比例的浓度或质量负荷。然而,研究污染物输运和受纳水水文学的研究主要集中在“传统”的雨水污染物和点源上,对化学性质复杂的非点源污染的评估较少。因此,我们在米勒溪(美国华盛顿州普吉特海湾地区的一个具有代表性的小型城市流域)进行了基流和暴雨采样。我们通过对 35 种雨水衍生化学品的靶向定量分析、互补的非靶向高分辨率质谱分析以及生态健康的替代化学指标,全面描述了有机污染物的特征和动态。对于定量分析物,每日基流总负荷为 0.8-3.4 g/天,暴雨事件负荷为 ∼80-320 g/暴雨(约 48 小时间隔),在暴雨期间检测到 9 种污染物的浓度超过 500 ng/L。值得注意的是,城市溪流的“污染图”比相对尖锐的暴雨洪水图要宽得多,表现出传输受限(而不是质量受限)的源动力学,在低强度降水期间水质立即恶化,并且在整个洪水过程中污染物质量持续迁移。研究结果支持优先进行源识别和有针对性的雨水管理工作,以改善小尺度城市受纳水体的水质和促进生态系统功能。

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