[Pollution Characteristics and Risk Assessment of Microplastics in the Xiamen Houxi River Watershed].

Q2 Environmental Science 环境科学 Pub Date : 2024-11-08 DOI:10.13227/j.hjkx.202311080
Qi-Ming Liu, Jin-Mei Lin, Yun-Feng Huang, Ning Huang, Si Li, Hai-Tao Liang, Ming-Hua Lin
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Abstract

Microplastics, defined as minuscule plastic particles measuring less than five millimeters (5 mm) in size, have become pervasive in various environments. Watershed areas, perpetually subjected to escalating human activities, face a growing and persistent threat from microplastic pollution. This study aimed to investigate the characteristics and ecological risk posed by microplastic pollution in the Houxi River watershed of Xiamen. A comprehensive analysis was conducted, employing field sampling, stereomicroscopy, Fourier transform infrared spectroscopy, as well as the risk index (H) and pollution load index (PLI) model. The findings revealed a 100% detection rate of microplastics at various points within the watershed. The average abundance of microplastics in water, sediment, and soil was found to be (3.65±0.51) n·L-1, (354.56±18.22) n·kg-1, and (1 509.55±69.90) n·kg-1, respectively. Significantly lower microplastic abundance was observed in the upper reaches of the watershed, attributed to the enhanced ecological protection in this area. In contrast, the middle and lower reaches, characterized by dense populations, exhibited higher microplastic levels due to increased production and domestic pollution. The majority of microplastics had a particle size of < 0.5 mm, constituting an average proportion of over 70%. Larger particles exhibited a smaller proportion. Fragmented particles dominated in shape, comprising over 50%, followed by fibers and films, with foam having the lowest proportion. The predominant polymer type identified in microplastics was PE, accounting for over 50%, followed by PP, while PET and PA represented the least. The regional microplastic risk index (H) consistently fell within the low-risk level I, yet it approached the level II risk. The pollution load index (PLI) of microplastics indicated a low-risk level I. These findings contribute valuable insights for regional microplastic pollution prevention and risk assessment efforts.

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[厦门后溪河流域微塑料污染特征及风险评价]。
微塑料被定义为尺寸小于5毫米(5毫米)的微小塑料颗粒,在各种环境中无处不在。流域一直受到不断升级的人类活动的影响,面临着微塑料污染日益严重和持续的威胁。本研究旨在探讨厦门市后溪河流域微塑料污染特征及其生态风险。采用现场采样、体视显微镜、傅里叶变换红外光谱以及风险指数(H)和污染负荷指数(PLI)模型进行综合分析。调查结果显示,在流域内的不同地点,微塑料的检出率为100%。水体、沉积物和土壤中微塑料的平均丰度分别为(3.65±0.51)n·L-1、(354.56±18.22)n·kg-1和(1 509.55±69.90)n·kg-1。小流域上游微塑料丰度明显降低,这与生态保护力度加大有关。相比之下,人口密集的中下游地区由于生产和生活污染的增加,微塑料水平较高。大多数微塑料的粒径为<;0.5 mm,平均占比超过70%。较大的颗粒所占比例较小。以破碎颗粒为主,占50%以上,其次是纤维和薄膜,泡沫所占比例最低。在微塑料中发现的聚合物类型以PE居多,占50%以上,其次是PP, PET和PA最少。区域微塑性风险指数(H)持续落在低风险I级以内,但接近风险II级。微塑料污染负荷指数(PLI)显示为低风险i级,为区域微塑料污染预防和风险评估工作提供了有价值的见解。
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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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期刊最新文献
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