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Microplastics profile along the Rhine River

机译:莱茵河沿岸的微塑料轮廓

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摘要

Microplastics result from fragmentation of plastic debris or are released to the environment as pre-production pellets or components of consumer and industrial products. In the oceans, they contribute to the ‘great garbage patches’. They are ingested by many organisms, from protozoa to baleen whales, and pose a threat to the aquatic fauna. Although as much as 80% of marine debris originates from land, little attention was given to the role of rivers as debris pathways to the sea. Worldwide, not a single great river has yet been studied for the surface microplastics load over its length. We report the abundance and composition of microplastics at the surface of the Rhine, one of the largest European rivers. Measurements were made at 11 locations over a stretch of 820 km. Microplastics were found in all samples, with 892,777 particles km −2 on average. In the Rhine-Ruhr metropolitan area, a peak concentration of 3.9 million particles km −2 was measured. Microplastics concentrations were diverse along and across the river, reflecting various sources and sinks such as waste water treatment plants, tributaries and weirs. Measures should be implemented to avoid and reduce the pollution with anthropogenic litter in aquatic ecosystems.
机译:微塑料是由塑料碎片破碎产生的,或者是作为预生产的颗粒或消费品和工业产品的成分释放到环境中的。在海洋中,它们助长了“大垃圾场”。从原生动物到须鲸,许多生物都摄入它们,并对水生动物群构成威胁。尽管多达80%的海洋垃圾来自陆地,但很少有人注意河流作为海洋垃圾路径的作用。在世界范围内,尚未研究过一条大河在其整个长度上的表面微塑料负荷。我们报告了莱茵河(欧洲最大的河流之一)表面的微塑料含量和组成。在820公里的范围内的11个位置进行了测量。在所有样品中均发现了微塑料,平均892,777颗粒km -2 。在莱茵-鲁尔都会区,测得的峰值浓度为390万颗粒km -2 。沿河和沿河的微塑料浓度各不相同,反映了各种来源和汇,例如废水处理厂,支流和堰。应采取措施避免和减少水生生态系统中人为垃圾的污染。

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