From pollution to solutions: Insights into the sources, transport and management of plastic debris in pristine and urban rivers

塑料污染 污染 微塑料 碎片 环境科学 垃圾箱 海洋废弃物 污染物 塑料废料 沉积物 环境保护 水文学(农业) 环境化学 生态学 废物管理 地质学 海洋学 化学 生物 古生物学 岩土工程 工程类
作者
Yuanqing He,J. G. Lu,Changjun Li,Xiaohui Wang,Chunhua Jiang,Lixin Zhu,Xinyu Bu,Khalida Jabeen,Tran Thi Bich Chau Vo,Daoji Li
出处
期刊:Environmental Research [Elsevier]
卷期号:245: 118024-118024
标识
DOI:10.1016/j.envres.2023.118024
摘要

River systems are important recipients of environmental plastic pollution and have become key pathways for the transfer of mismanaged waste from the land to the ocean. Understanding the sources and fate of plastic debris, including plastic litter (>5 mm) and microplastics (MPs) (<5 mm), entering different riverine systems is essential to mitigate the ongoing environmental plastic pollution crisis. We comprehensively investigated the plastic pollution in the catchments of two rivers in the Yangtze River basin: an urban river, the Suzhou section of the Beijing-Hangzhou Grand Canal (SZ); and a pristine rural river, the Jingmen section of the Hanjiang River (JM). The abundance of plastic pollutants in SZ was significantly higher than in JM: 0.430 ± 0.450 items/m3 and 0.003 ± 0.003 items/m3 of plastic litter in the water; 23.47 ± 25.53 n/m3 and 2.78 ± 1.55 n/m3 MPs in the water; and 218.82 ± 77.40 items/kg and 5.30 ± 1.99 items/kg of MPs in the sediment, respectively. Plastic litter and MPs were closely correlated in abundance and polymer composition. Overall, the polymer type, shape and color of MPs were dominant by polypropylene (42.5%), fragment (60.4%) and transparent (40.0%), respectively. Source tracing analysis revealed that packaging, shipping, and wastewater were the primary sources of plastic pollutants. The mantel analysis indicated that socio-economic and geospatial factors play crucial roles in driving the hotspot formation of plastic pollution in river networks. The composition of the MP communities differed significantly between the sediments and the overlying water. The urban riverbed sediments had a more pronounced pollutant ‘sink’ effect compared with the pristine rivers. These findings suggested that the modification of natural streams during urbanization may influence the transport and fate of plastic pollutants in them. Our results offer pivotal insights into effective preventive measures.

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