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Distribution and composition of plastic debris along the river shore in the Selenga River basin in Mongolia

机译:蒙古赛雷加河流域河岸塑料碎片的分布与组成

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Plastic pollution in aquatic environments is one of the most fatal environmental issues in the world. Although the distribution of plastic debris in the sea and at coasts has been addressed, the transportation of plastics through a river system is unclear but important. The distribution of plastic debris in the Selenga River system is responsible for the environmental pollution of Lake Baikal. Twelve sampling sites along the river shore of the Selenga River system have been surveyed considering the industrial activity and population density. The number of plastics significantly correlates with the population density. The higher the number of plastics is, the smaller is the average size. The size fractions of foam and film plastics show a significant relationship, suggesting that the plastic debris fragmented on-site on the river shores. The most abundant plastic debris is polystyrene foam (PSF), which is usually used for construction and packaging. Plastic debris occurs due to insufficient plastic waste management. Its distribution is affected by seasonal changes of the water level and flow rate of tributaries. Furthermore, the fragmentation of plastic debris is related to temperature changes associated with freeze and thaw cycles, solar radiation, and mechanical abrasion. Smaller microplastics with microscopic sizes were detected in PSF debris. Based on micro-Fourier transform infrared spectroscopy, these microplastics are polystyrene and polyethylene. This study proves that invisible and visible microplastics are transported together.
机译:水生环境中的塑料污染是世界上最致命的环境问题之一。虽然已经解决了海洋和海岸塑料碎片的分布,但通过河流系统运输塑料,尚不清楚但重要。 Selenga River System的塑料碎片分布负责贝加尔湖的环境污染。考虑到工业活动和人口密度,调查了沿Selenga River System河岸的十二个抽样场所。塑料的数量与人口密度明显相关。塑料的数量越高,平均尺寸越小。泡沫和薄膜塑料的尺寸分数表明了重要的关系,暗示塑料碎片在河流海岸的现场碎片。最丰富的塑料碎片是聚苯乙烯泡沫(PSF),其通常用于施工和包装。由于塑料废物管理不足而发生塑料碎片。其分布受到支流水平和流速的季节变化的影响。此外,塑料碎片的碎片与与冻结和解冻循环,太阳辐射和机械磨损相关的温度变化有关。在PSF碎片中检测到具有微观尺寸的较小微塑料。基于微傅里叶变换红外光谱,这些微塑料是聚苯乙烯和聚乙烯。本研究证明,隐形和可见的微薄塑料在一起。

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