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降雨前后城市河流中微塑料的重组。

Microplastic reorganization in urban river before and after rainfall.

机构信息

State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing, 100038, China.

Beijing Water Science and Technology Institute, Beijing, 100048, China.

出版信息

Environ Pollut. 2022 Dec 1;314:120326. doi: 10.1016/j.envpol.2022.120326. Epub 2022 Oct 1.

Abstract

Microplastics (MPs) present in non-negligible amounts in urban environments, where urban rivers serve as important transport channels for MPs. However, the footprint of MPs in urban rivers under the influence of natural and anthropogenic factors is poorly understood. This study investigated the MPs organization, stability and pollution risk before and after rainfall in the Qing River, Beijing. Rainfall potentially diluted the MPs abundance, attributed to opening of barrages and increase of flow velocity. The proportion of small-sized MPs (SMPs, 48-300 μm) decreased slightly, whereas that of normal-sized MPs (NMPs, 300-1000 μm) and large-sized MPs (LMPs, > 1000 μm) increased. However, SMPs dominantly presented in the Qing River before and after rainfall. Polyethylene terephthalate (PET), polypropylene (PP), polyethylene (PE), and polystyrene (PS) were main polymers observed in the Qing River. The proportions of PET and PS decreased, while PP and PE increased after rainfall. The main types of MPs introduced by stormwater were PP and PE. The elevated MP diversity integrated index after rain suggested that rainfall enriched the local sources of MPs. Rainfall reduced the stability and fragmentation of MPs owing to the introduction of large debris. NMPs and LMPs were susceptible to further fragmentation and downsizing, implying that MPs abundance in the Qing River tended to rise and SMPs might enriched. In addition, alteration of MPs fragmentation and stability reflected that the likely input source was wastewater treatment plant and atmospheric deposition before rainfall, whereas soil and road dust were possible sources after rainfall. The pollution risk assessment defined the MPs pollution risk of Qing River as low level and decreased after rainfall. This study demonstrated that rainfall substantially influences MPs organization in urban river and provided empirical support for MPs environmental behavior under influence of natural and anthropogenic factors.

摘要

微塑料(MPs)在城市环境中大量存在,城市河流是 MPs 的重要运输通道。然而,在自然和人为因素的影响下,城市河流中 MPs 的足迹尚未被充分了解。本研究调查了北京清河在降雨前后 MPs 的组织、稳定性和污染风险。降雨可能会稀释 MPs 的丰度,这归因于拦河坝的开启和流速的增加。小尺寸 MPs(SMPs,48-300μm)的比例略有下降,而正常尺寸 MPs(NMPs,300-1000μm)和大尺寸 MPs(LMPs,>1000μm)的比例增加。然而,SMPs 在降雨前后仍是清河的主要存在形式。聚对苯二甲酸乙二醇酯(PET)、聚丙烯(PP)、聚乙烯(PE)和聚苯乙烯(PS)是清河中主要观察到的聚合物。PET 和 PS 的比例下降,而 PP 和 PE 的比例在降雨后增加。暴雨引入的 MPs 主要类型为 PP 和 PE。雨后 MPs 多样性综合指数升高,表明降雨增加了当地 MPs 的来源。降雨由于大碎屑的引入,降低了 MPs 的稳定性和碎片化。NMPs 和 LMPs 容易进一步碎片化和缩小尺寸,这表明清河中的 MPs 丰度可能会上升,而 SMPs 可能会富集。此外,MPs 碎片化和稳定性的变化表明,降雨前 MPs 的可能输入源是污水处理厂和大气沉降,而降雨后土壤和道路灰尘可能是潜在的来源。污染风险评估将清河的 MPs 污染风险定义为低水平,并在降雨后降低。本研究表明,降雨对城市河流中 MPs 的组织产生了重大影响,并为自然和人为因素影响下 MPs 的环境行为提供了经验支持。

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