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受土地利用和暴雨因素影响,潮湿天气下城市地表径流和下水道溢流中微塑料丰度及特征的实时变化。

Real-time variabilities in microplastic abundance and characteristics of urban surface runoff and sewer overflow in wet weather as impacted by land use and storm factors.

作者信息

Sun Xiaonan, Jia Qilong, Ye Jianfeng, Zhu Yi, Song Zhaofeng, Guo Yali, Chen Hao

机构信息

Shanghai Academy of Environmental Sciences, 200233 Shanghai, China.

School of Resources & Environmental Engineering, East China University of Science & Technology, Shanghai 200237, China.

出版信息

Sci Total Environ. 2023 Feb 10;859(Pt 2):160148. doi: 10.1016/j.scitotenv.2022.160148. Epub 2022 Nov 12.

Abstract

Urban surface runoff (USR) and drainage system overflows during wet weather (WWF) play a key role in shaping water pollution. Particularly, the impact of large amounts of microplastic pollution on urban water bodies is unclear. We conducted an in-field investigation in six central urban drainage systems along Suzhou Creek in the Shanghai megacity of China and identified the impacts of storm factors and land use on the real-time dynamic changes in microplastic abundance and characteristics in USR and WWF. Microplastic abundances ranged from 228.3 ± 105.4-4969.51 ± 348.8, 309.3 ± 144.3-5195.8 ± 425.5, and 130.0 ± 30.0-8500.0 ± 1241.0 particles/L in the traffic and residential catchment USR, and the WWF, respectively. Under similar storm factor conditions, we observed correlations between environmental factors and microplastic abundance, especially the polymer type, verifying the significant role of land use. The microplastic abundance were 90.2 particles/L higher in the traffic catchment USR than in the residential catchment USR. Notably, we found unique microplastic polymers comprising ethylene vinyl acetate copolymer and thermoplastic elastomers in the residential and traffic catchment USR, respectively. However, land use had a minimum impact on the size and shape of microplastics: small-sized and film microplastics dominated in both USR types. We found statistical evidence of the widespread correlations between microplastic abundance and storm factors (accumulated storm depth and WWF flow) in both USR and WWF. The first flush phenomenon of microplastic dynamics was found in both USR and WWF. Microplastic characteristics also changed dynamically with storm time. With heavy storm factors, polypropylene and small-sized (<1 mm) microplastics in USR events increased and then decreased. This was also true for WWF events in granular and polyethylene terephthalate microplastics. Our results can facilitate the targeted mitigation of emerging pollutants to enhance stormwater management strategies and prevent future contamination.

摘要

城市地表径流(USR)以及潮湿天气(WWF)期间排水系统溢流在形成水污染方面起着关键作用。特别是,大量微塑料污染对城市水体的影响尚不清楚。我们在中国上海特大城市苏州河沿线的六个中心城区排水系统中进行了实地调查,确定了暴雨因素和土地利用对城市地表径流和潮湿天气期间微塑料丰度及特征实时动态变化的影响。交通和住宅集水区的城市地表径流以及潮湿天气期间微塑料丰度分别为228.3±105.4 - 4969.51±348.8、309.3±144.3 - 5195.8±425.5以及130.0±30.0 - 8500.0±1241.0颗粒/升。在类似的暴雨因素条件下,我们观察到环境因素与微塑料丰度之间的相关性,尤其是聚合物类型,证实了土地利用的重要作用。交通集水区城市地表径流中的微塑料丰度比住宅集水区城市地表径流中的高90.2颗粒/升。值得注意的是,我们分别在住宅和交通集水区城市地表径流中发现了独特的微塑料聚合物,即乙烯 - 醋酸乙烯酯共聚物和热塑性弹性体。然而,土地利用对微塑料的尺寸和形状影响最小:两种类型的城市地表径流中均以小尺寸和薄膜状微塑料为主。我们发现了城市地表径流和潮湿天气期间微塑料丰度与暴雨因素(累计暴雨深度和潮湿天气流量)之间广泛相关性的统计证据。在城市地表径流和潮湿天气期间均发现了微塑料动态的首次冲刷现象。微塑料特征也随暴雨时间动态变化。在强暴雨因素下,城市地表径流事件中的聚丙烯和小尺寸(<1毫米)微塑料先增加后减少。颗粒状和聚对苯二甲酸乙二酯微塑料的潮湿天气事件也是如此。我们的结果有助于有针对性地减轻新兴污染物,以加强雨水管理策略并防止未来污染。

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