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近海海域中的微塑料是否能反映沿海地区的塑料排放?

Can microplastics in offshore waters reflect plastic emissions from coastal regions?

机构信息

School of Geography and Ocean Science, Nanjing University, Nanjing, 210023, China; Ministry of Education Key Laboratory for Coastal and Island Development, Nanjing University, Nanjing, 210023, China.

School of Geography and Ocean Science, Nanjing University, Nanjing, 210023, China; Ministry of Education Key Laboratory for Coastal and Island Development, Nanjing University, Nanjing, 210023, China; Collaborative Innovation Center of South China Sea Studies, Nanjing University, Nanjing, 210023, China.

出版信息

Chemosphere. 2022 Dec;308(Pt 3):136397. doi: 10.1016/j.chemosphere.2022.136397. Epub 2022 Sep 9.

Abstract

Marine microplastic pollution is a major environmental challenge that threatens marine ecosystems and human health. Several models have been used to calculate and predict the theoretical amount of plastic waste discharged into the sea by coastal countries. Unlike earlier theoretical models of source discharge, we used the method of data normalisation to focus on the actual distribution of microplastics and their potential ecological risk in offshore surface waters. Our findings indicate that the average normalised abundance of microplastics in near-shore region of Bohai Sea was greater than the average normalised abundance of microplastics in the seas near the Yangtze River Delta urban agglomeration and the Pearl River Delta urban agglomeration. Moreover, the average amount of plastic waste discharged from terrestrial sources to the ocean per kilometre exhibited the following order: Bohai Rim urban agglomeration (150.90) (tonnes km) < the Pearl River Delta urban agglomeration (274.30) (tonnes km) < Yangtze River Delta urban agglomeration (577.44) (tonnes km). Further, the average microplastics abundance in offshore areas of different countries and the amount of plastic discharged per kilometre of the coastline were significantly negatively correlated, implying that microplastics were not necessarily abundant in coastal areas where large amounts of plastic are discharged into the sea. Hydrodynamic conditions had the greatest influence on the distribution of microplastics in offshore surface waters. The transport of nutrient salts from terrestrial areas to offshore waters was also influenced by hydrodynamics, with enrichment patterns in offshore areas exhibiting similar to those of microplastics. Therefore, when the offshore microplastic accumulation area overlapped with the nutrient salt enrichment zone, the health risk associated with the consumption of edible fish from offshore communities increased. In view of these findings, coastal countries must implement policies to reduce marine plastic waste emissions and develop management strategies based on their local pollution levels.

摘要

海洋微塑料污染是一个主要的环境挑战,威胁着海洋生态系统和人类健康。已经有几种模型被用于计算和预测沿海国家排入海洋的塑料废物的理论数量。与早期的源排放理论模型不同,我们使用数据归一化方法来关注近海表面水中微塑料的实际分布及其潜在的生态风险。我们的研究结果表明,渤海近岸地区微塑料的平均归一化丰度大于长江三角洲城市群和珠江三角洲城市群近海地区微塑料的平均归一化丰度。此外,陆地源向海洋排放的每公里塑料废物的平均数量表现出以下顺序:环渤海城市群(150.90)(吨公里)<珠江三角洲城市群(274.30)(吨公里)<长江三角洲城市群(577.44)(吨公里)。此外,不同国家近海地区的平均微塑料丰度与每公里海岸线排放的塑料量呈显著负相关,这意味着在大量塑料排入海洋的沿海地区,微塑料不一定丰富。水动力条件对近海表面水中微塑料的分布有最大的影响。陆地营养盐向近海输送也受到水动力的影响,近海地区的富集会呈现出与微塑料相似的模式。因此,当近海微塑料积累区与营养盐富集区重叠时,来自近海社区的食用鱼的消费相关健康风险会增加。鉴于这些发现,沿海国家必须实施政策以减少海洋塑料废物排放,并根据当地污染水平制定管理策略。

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