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微塑料在一条最大的地中海气候河流中的浓度、分布和动态:全流域方法。

Microplastic concentration, distribution and dynamics along one of the largest Mediterranean-climate rivers: A whole watershed approach.

机构信息

Unidad de Cambio Climático y Medio Ambiente, Instituto Iberoamericano de Desarrollo Sostenible, Universidad Autónoma de Chile, Temuco, Chile.

Department of Plant Biology and Ecology, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), 48940, Leioa, Spain.

出版信息

Environ Res. 2022 Jun;209:112808. doi: 10.1016/j.envres.2022.112808. Epub 2022 Jan 25.

DOI:10.1016/j.envres.2022.112808
PMID:35085565
Abstract

Microplastics (MPs) have been recognized as one of the most ubiquitous environmental pollutants globally. They have been found in all ecosystems studied to date, threatening biological diversity, ecosystem functioning and human health. The present study aimed to elucidate the environmental and anthropogenic drivers of MP dynamics in the whole catchment of the Biobío river, one of the largest rivers in South America. MP concentration and characteristics were analysed in 18 sites subjected to different sources of pollution and other human-related impacts. The sampling sites were classified in relation to altitudinal zones (highland, midland and lowland) and ecosystem types (fluvial and reservoir), and different water and territorial environmental variables were further collated and considered for analysis. Seven types of microplastic polymers were identified in the samples analysed, with a catchment mean (±SE) MP concentration of 22 ± 0.4 particles m, and MP presence being significantly higher in lowlands (26 ± 2 particle m) and in reservoirs (42 ± 14 particle m). The most abundant type of MP was fragments (84%), with a mean concentration of 37 ± 6 particles m. Overall, MP concentrations were low compared to those found in other studies, with a strong influence of human population size.

摘要

微塑料(MPs)已被公认为全球分布最广泛的环境污染物之一。迄今为止,它们已在所有研究过的生态系统中被发现,对生物多样性、生态系统功能和人类健康构成威胁。本研究旨在阐明比奥比奥河(南美洲最大的河流之一)整个流域中 MP 动态变化的环境和人为驱动因素。对 18 个受到不同污染源和其他人为影响的地点进行了 MP 浓度和特征分析。采样点根据海拔带(高地、中地和低地)和生态系统类型(河流和水库)进行分类,并进一步整理和考虑了不同的水和领土环境变量进行分析。在分析的样本中鉴定出了七种类型的微塑料聚合物,流域平均(±SE)MP 浓度为 22±0.4 个颗粒/m,在低地(26±2 个颗粒/m)和水库(42±14 个颗粒/m)中 MP 的存在明显更高。最丰富的 MP 类型是碎片(84%),平均浓度为 37±6 个颗粒/m。总体而言,与其他研究相比,MP 浓度较低,受人口规模的影响较大。

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