京畿道几条河流微塑料污染评价

Seung-Gyu Jung, Hyeon-Do Kim, Hee-Young Kim, Hyeongsu Kim, Kyong-Hee Lee, Hyun-Jin Hyun-Jin, Ju-Yong Jeong
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摘要

近年来,人们对微塑料对环境的影响越来越感兴趣,在世界范围内开展了积极的研究工作。然而,这些研究大多集中在海洋环境中的微塑料污染,导致缺乏淡水环境中微塑料水平的信息。为了解决这一差距,本研究调查了韩国京畿道四条河流和两家污水处理厂流出物中的微塑料类型和浓度,以确定微塑料污染程度与周围环境和季节的关系。庆安川(1.8~9.9 ea/L)、福河川(0.47~2.6 ea/L)、乌山川(0.5~6.6 ea/L)、滩川(0.2~11.4 ea/L)的微塑料浓度高于以往调查过的滩川和洛东江。然而,由于空间限制,尚不清楚废水排放是否有下游影响。最常检测到的微塑料类型是聚丙烯、聚乙烯和聚酯,占微塑料总量的58-90%,可能是由于周围环境(工业和人类居住)的影响。此外,发现微塑料的类型和浓度反映了季节性特征,特别是降雨量,这表明需要持续监测以准确评估情况。这项研究的结果可以帮助制定未来减少淡水资源中微塑料污染的管理策略。
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An Assessment of Microplastic Pollution in Several Streams of Gyeonggi-do
In recent years, there has been a growing interest in the environmental effects of microplastics, leading to active research efforts worldwide. However, most of these studies have focused on microplastic pollution in marine environments, resulting in a lack of information on the levels of microplastics in freshwater environments. To address this gap, this study investigated types and concentrations of microplastics in four rivers and two effluents from wastewater treatment plants in Gyeonggi-do, Korea, to determine the extent of microplastic contamination in relation to the surrounding environment and seasons. Microplastic concentrations were higher in the Gyeongan Stream (1.8~9.9 ea/L), Bokha Stream (0.47~2.6 ea/L), Osan Stream (0.5~6.6 ea/L), and Tan Stream (0.2~11.4 ea/L) than in the Tan Stream or Nakdong River, which were investigated in the past. However, due to spatial limitations, it is unclear whether the wastewater effluent had any downstream effects. The most commonly detected microplastic types were polypropylene, polyethylene, and polyester, comprising 58–90% of total microplastics, likely due to the influence of the surrounding environment (industries and human habitation). Moreover, types and concentrations of microplastics were found to reflect seasonal characteristics, particularly rainfall, suggesting that continuous monitoring is necessary to accurately assess the situation. The findings of this study can aid in the development of management strategies for reducing microplastic pollution in freshwater sources in the future.
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