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大陆微塑料:存在、特征和环境传输途径。

Continental microplastics: Presence, features, and environmental transport pathways.

机构信息

Instituto Argentino de Oceanografía (IADO), Universidad Nacional del Sur (UNS)-CONICET, Florida 8000, Complejo CCT CONICET Bahía Blanca, Edificio E1, B8000BFW Bahía Blanca, Argentina; Research Institute for Applied Mechanics, Kyushu University, 6-1 Kasuga-Koen, Kasuga 816-8580, Japan.

Instituto Argentino de Oceanografía (IADO), Universidad Nacional del Sur (UNS)-CONICET, Florida 8000, Complejo CCT CONICET Bahía Blanca, Edificio E1, B8000BFW Bahía Blanca, Argentina; Departamento de Química, Universidad Nacional del Sur, Avenida Alem 1253, B8000DIC Bahía Blanca, Argentina.

出版信息

Sci Total Environ. 2021 Dec 10;799:149447. doi: 10.1016/j.scitotenv.2021.149447. Epub 2021 Aug 2.

Abstract

Microplastics (MPs) are ubiquitous contaminants of great concern for the environment. MPs' presence and concentration in the air, soil, marine, and freshwater environments have been reported as a matter of priority in recent years. This review addresses the current knowledge of the main pathways of MPs in air, soil, and freshwater reservoirs in order to provide an integrated understanding of their behaviors in the continental environment. Therefore, MPs' occurrence (as particle counts), sources, and how their features as shape, size, polymer composition, and density could influence their transport and final sink were discussed. Wind resuspension and atmospheric fallout, groundwater migration, runoff from catchments, and water flow from rivers and effluents were pointed as the principal pathways. MPs' size, shape, polymer composition, and density interact with environmental variables as soil structure and composition, precipitation, wind, relative humidity, water temperature, and salinity. Sampling designs for MPs research should further consider soil characteristics, climate variability and extreme events, time lag and grasshopper effects, morphological and hydrological features of aquatic systems, and water currents, among others. Furthermore, long-term monitoring and lab experiments are still needed to understand MPs' behavior in the environment. This information will provide a unified understanding of the continental MPs pathways, including the key main findings, knowledge gaps, and future challenges to understand this emerging contaminant.

摘要

微塑料(MPs)是一种普遍存在的污染物,对环境构成了极大的关注。近年来,人们优先关注 MPs 在空气、土壤、海洋和淡水环境中的存在和浓度。本综述旨在阐述 MPs 在空气、土壤和淡水库中的主要迁移途径,以便综合了解它们在大陆环境中的行为。因此,本文讨论了 MPs 的出现(如颗粒计数)、来源以及其形状、大小、聚合物组成和密度等特征如何影响其迁移和最终归宿。风的再悬浮和大气沉降、地下水迁移、集水区的径流水以及河流和污水的水流被认为是主要的迁移途径。 MPs 的大小、形状、聚合物组成和密度与环境变量相互作用,如土壤结构和组成、降水、风、相对湿度、水温和盐度。 MPs 研究的采样设计还应进一步考虑土壤特征、气候变异性和极端事件、时滞和蝗虫效应、水生系统的形态和水文学特征以及水流等因素。此外,还需要进行长期监测和实验室实验,以了解 MPs 在环境中的行为。这些信息将为理解 MPs 的大陆迁移途径提供一个统一的认识,包括主要发现、知识空白和未来的挑战,以了解这种新兴污染物。

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