A critical review of microplastic pollution in urban freshwater environments and legislative progress in China: Recommendations and insights

微塑料 城市化 中国 立法机关 环境规划 淡水生态系统 环境科学 立法 环境资源管理 环境保护 生态系统 地理 生态学 生物 考古 政治学 法学
作者
Yuyao Xu,Faith Ka Shun Chan,Jun He,Matthew F. Johnson,Christopher Gibbins,Paul Kay,Thomas H. Stanton,Yaoyang Xu,Gang Li,Meili Feng,O. A. L. Paramor,Xubiao Yu,Yong‐Guan Zhu
出处
期刊:Critical Reviews in Environmental Science and Technology [Informa]
卷期号:51 (22): 2637-2680 被引量:74
标识
DOI:10.1080/10643389.2020.1801308
摘要

Freshwater systems are vitally important, supporting diversity and providing a range of ecosystem services. In China, rapid urbanization (over 800 million urban population) has led to multiple anthropogenic pressures that threaten urban freshwater environments. Microplastics ([less than] 5 mm) result from intensive production and use of plastic materials, but their effects in urban freshwater environments remain poorly understood. Rising concerns over the ecological effects of microplastics have resulted in increased attention being given to this contaminant in Chinese freshwater systems. Some studies provide quantitative data on contamination loads, but in general relevant knowledge in freshwater environment remains narrow in China, and lacking adequate understanding of threshold levels for detrimental effects. Notably, non-standardized sample collection and processing techniques for point and non-point sources have hindered comparisons of contamination loads and associated risk. Meanwhile, legislative frameworks for managing microplastics in China remain in their infancy. This manuscript critically reviews what is known of the nature and magnitude of microplastic pollution in Chinese freshwater environments, and summarizes relevant Chinese legislation. It provides recommendations for improving the legislative framework in China and identifies research gaps that need to be addressed to improve management and regulatory strategies for dealing with microplastic pollution in Chinese urban freshwater environments.
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