Intensive Spatiotemporal Characterization of the Tire Wear Toxin 6PPD Quinone in Urban Waters

环境科学 采样(信号处理) 溪流 降水 自适应采样 环境监测 水文学(农业) 环境化学 环境工程 计算机科学 化学 地质学 地理 气象学 探测器 统计 蒙特卡罗方法 岩土工程 电信 数学 计算机网络
作者
Angelina Jaeger,J. J. Monaghan,Haley Tomlin,Jamieson Atkinson,Chris G. Gill,Erik T. Krogh
出处
期刊:ACS ES&T water [American Chemical Society]
卷期号:4 (12): 5566-5574 被引量:9
标识
DOI:10.1021/acsestwater.4c00614
摘要

6PPDQ is a tire-derived contaminant toxic to coho salmon (LC50 = 41–95 ng/L) found widely distributed in urban environments. Most monitoring efforts have relied on relatively few discrete samples collected at select locations across rain events. Early work has revealed that 6PPDQ concentrations vary widely over time and space, raising questions about when and where to collect samples. Here, we employ condensed phase membrane introduction mass spectrometry, a high-throughput analysis approach to characterize spatiotemporal variability of 6PPDQ in urban streams. Analytical method detection limits of 0.3–8 ng/L and a duty cycle of 2.5 min/sample enabled high-throughput adaptive sampling. Temporal sampling revealed dynamic 6PPDQ concentrations, with significant changes occurring over minutes during peak rainfall. Spatial variability was characterized at multiple sites along three watercourses during the first significant precipitation of autumn 2023 on central Vancouver Island, B.C., Canada. Site-specific concentrations suggest attenuation of 6PPDQ after point source inputs by some combination of physical (dilution, sorption) or chemical (degradation) processes. This is the first report of an intensive sampling campaign describing the spatiotemporal distribution of 6PPDQ, highlighting the need for careful consideration of sampling strategies to evaluate the risk and impact of 6PPDQ in urban waterways.
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