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协调塑料释放:宏观和微塑料向环境流动的综合建模

Reconciling plastic release: Comprehensive modeling of macro- and microplastic flows to the environment.

作者信息

Jiang Danyang, Nowack Bernd

机构信息

Empa - Swiss Federal Laboratories for Materials Science and Technology, Technology and Society Laboratory, Lerchenfeldstrasse 5, 9014, St. Gallen, Switzerland.

Empa - Swiss Federal Laboratories for Materials Science and Technology, Technology and Society Laboratory, Lerchenfeldstrasse 5, 9014, St. Gallen, Switzerland.

出版信息

Environ Pollut. 2025 Jul 8;383:126800. doi: 10.1016/j.envpol.2025.126800.

Abstract

Plastic pollution is a major environmental challenge of the 21st century. Addressing this issue requires a clear understanding of environmental emissions. Combining material flow analysis with release assessments provides an effective way to quantify plastic emissions from a life cycle perspective. This study integrates recent research on key emission pathways into a plastic release model based on probabilistic material flow analysis, offering a comprehensive quantification of macro- and microplastic emissions for seven polymers. Switzerland in 2022 was selected as the case study due to the availability of detailed data. Emission factors for 245 release flows were determined, enabling the quantification of emissions to soil and water for each polymer. We estimate that a total of 222 ± 50 g of plastic per capita per year were released into the environment, with PET accounting for 37 %, followed by PP at 22 %. Macroplastics represent 82 % of the total plastic release. Comparison with previous estimates shows considerable variation in per capita emissions, mainly due to differences in the inclusion of tyre wear and how littering is modeled. Total plastic release based on our model is substantially lower than in earlier studies, suggesting that in an industrialized country with effective waste management and high environmental awareness, plastic emissions are lower than previously assumed.

摘要

塑料污染是21世纪的一项重大环境挑战。解决这一问题需要对环境排放有清晰的认识。将物质流分析与释放评估相结合,为从生命周期角度量化塑料排放提供了一种有效方法。本研究将近期关于关键排放途径的研究整合到基于概率物质流分析的塑料释放模型中,对七种聚合物的宏观和微观塑料排放进行了全面量化。由于可获得详细数据,选择2022年的瑞士作为案例研究。确定了245种释放流的排放因子,从而能够量化每种聚合物向土壤和水体的排放量。我们估计,每年人均向环境中释放的塑料总量为222±50克,其中聚对苯二甲酸乙二酯(PET)占37%,其次是聚丙烯(PP),占22%。宏观塑料占塑料总释放量的82%。与之前的估计相比,人均排放量存在显著差异,主要原因在于轮胎磨损的纳入情况以及垃圾丢弃建模方式的不同。基于我们模型的塑料总释放量大幅低于早期研究,这表明在一个拥有有效废物管理和高度环境意识的工业化国家,塑料排放量低于此前的假设。

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