Micropollutant concentration fluctuations in combined sewer overflows require short sampling intervals

IF 7.2 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Viviane Furrer , Lena Mutzner , Christoph Ort , Heinz Singer
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Abstract

Combined sewer overflows (CSOs) are an important pathway of organic micropollutants from urban areas to open water bodies. Understanding the temporal dynamics of these micropollutants during overflow events is crucial for applying appropriate sampling methods and implementing effective management strategies. Yet, little is known about the dynamics of micropollutants in CSOs, because most studies report concentrations from single grab samples or event mean concentrations (EMCs). With unique high temporal resolution measurements (3 min), we show the real dynamics of polar organic micropollutants in CSOs of one small (2,700 people: P) and one large (159,000 P) urban catchment, for two micropollutant categories: (i) 33 micropollutants in municipal wastewater and (ii) 13 micropollutants from urban surface runoff. The concentration dynamics depend on the substance source and the catchment size. Indoor substances such as pharmaceuticals show high temporal dynamics with changes of 1 to 2 orders of magnitude within 9 min in the CSO of the small catchment. In contrast, outdoor substances at the small catchment and all substances at the large catchment display considerably lower variation. We tested various time-proportional sampling strategies to assess the range of error when estimating EMCs. We recommend an interval of 3 min to capture the dynamics of indoor substances in CSOs from small catchments. The results highlight that both future monitoring campaigns and the planning and management of urban wet-weather treatment systems will benefit from high temporal sampling resolutions, not only to understand dynamics but also to minimize errors of estimated EMCs.

Abstract Image

组合下水道溢流中的微污染物浓度波动需要较短的采样间隔
组合下水道溢流(CSO)是有机微污染物从城市地区进入开放水体的重要途径。了解溢流事件期间这些微污染物的时间动态对于应用适当的采样方法和实施有效的管理策略至关重要。然而,人们对CSO中微污染物的动力学知之甚少,因为大多数研究都报告了单次采集样本或事件平均浓度(EMCs)的浓度。通过独特的高时间分辨率测量(3分钟),我们展示了一个小型(2700人:P)和一个大型(159000 P)城市集水区CSO中极性有机微污染物的真实动态,包括两类微污染物:(i)城市废水中的33种微污染物和(ii)城市地表径流中的13种微污染物。浓度动态取决于物质来源和集水区大小。药物等室内物质在小流域的CSO中显示出高的时间动态,在9分钟内变化1到2个数量级。相比之下,小集水区的室外物质和大集水区的所有物质显示出相当低的变化。我们测试了各种时间比例采样策略,以评估估计EMC时的误差范围。我们建议间隔3分钟,以捕捉小集水区CSO中室内物质的动态。研究结果强调,未来的监测活动以及城市潮湿天气处理系统的规划和管理都将受益于高时间采样分辨率,不仅可以了解动态,还可以最大限度地减少估计EMCs的误差。
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来源期刊
Water Research X
Water Research X Environmental Science-Water Science and Technology
CiteScore
12.30
自引率
1.30%
发文量
19
期刊介绍: Water Research X is a sister journal of Water Research, which follows a Gold Open Access model. It focuses on publishing concise, letter-style research papers, visionary perspectives and editorials, as well as mini-reviews on emerging topics. The Journal invites contributions from researchers worldwide on various aspects of the science and technology related to the human impact on the water cycle, water quality, and its global management.
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