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模拟湖泊沉积物-水系统中微塑料悬浮物和沉积的动态过程。

Simulation of the dynamic processes of microplastic suspension and deposition in a lake sediment-water system.

机构信息

Guangdong Basic Research Center of Excellence for Ecological Security and Green Development, Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources, Guangdong University of Technology, Guangzhou, 510006, China.

Chongqing Key Laboratory of Water Environment Evolution and Pollution Prevention and Control in Three Gorges Reservoir Area, Chongqing Three Gorges University, Chongqing, 404000, China.

出版信息

Environ Sci Pollut Res Int. 2024 Jun;31(29):41926-41938. doi: 10.1007/s11356-024-33743-7. Epub 2024 Jun 10.

Abstract

The occurrence of microplastics in aquatic environments has attracted increasing interest from both the public and scientists, especially their migration behaviors. Although several environmental behaviors of microplastics have been studied, the issue of microplastic suspension and deposition in lake sediment-water systems remains to be elucidated. In this study, we built an indoor sediment-water system with input and output rivers that simulated the actual situations in lakes, and aimed to explore the suspension and deposition behavior of microplastics using eight group experiments. The abundance of microplastics in overlying water and sediments in different periods was analyzed, and the characteristics of hydrodynamic disturbance on microplastic suspension and deposition were identified. Importantly, the exchange of microplastics in sediments and water under dynamic flow conditions was assessed. The results showed that the middle-scale experiment designed in this study effectively simulated the dynamic transport process of microplastics in lakes, and the hydrodynamic force had a significant impact on the suspension and deposition behaviors of microplastics. The average abundance of polystyrene, polyethylene terephthalate and polyamide microplastics was 1.07, 0.60 and 0.83 particles/L in overlying water during the suspension experiments, respectively. This showed a pattern of first rising and then falling with the extension of suspension time. Even in the environment with the maximum input water volume (8000 ml/min) in this study, only microplastics at a depth of 0 to 2 cm from the sediment were suspended. The average abundance of microplastics was 313.02 particles/kg during the deposition experiments, which gradually increased with the extension of deposition time in sediments. Finally, microplastic sizes in water of the suspension experiments and in sediments of the deposition experiments were concentrated in the range of 500 to 1500 μm and 300 to 1000 μm, respectively.

摘要

微塑料在水生环境中的出现引起了公众和科学家的广泛关注,尤其是它们的迁移行为。尽管已经研究了微塑料的几种环境行为,但微塑料在湖泊底泥-水系统中的悬浮和沉积问题仍有待阐明。本研究构建了一个带有输入和输出河流的室内底泥-水系统,模拟了湖泊的实际情况,并进行了八组实验,旨在探索微塑料的悬浮和沉积行为。分析了不同时期上覆水中和沉积物中微塑料的丰度,确定了水动力干扰对微塑料悬浮和沉积的特征。重要的是,评估了在动态水流条件下底泥和水中微塑料的交换。结果表明,本研究中设计的中规模实验有效地模拟了湖泊中微塑料的动态输运过程,水动力对微塑料的悬浮和沉积行为有显著影响。悬浮实验中,聚苯乙烯、聚对苯二甲酸乙二醇酯和聚酰胺微塑料在上覆水中的平均丰度分别为 1.07、0.60 和 0.83 个/升,呈现出随悬浮时间延长先上升后下降的趋势。即使在本研究中输入水量最大(8000 ml/min)的环境中,也只有距离底泥 0 到 2 厘米深的微塑料被悬浮。沉积实验中,微塑料的平均丰度为 313.02 个/千克,随着沉积时间的延长,在沉积物中逐渐增加。最后,悬浮实验中水中微塑料的粒径和沉积实验中沉积物中微塑料的粒径分别集中在 500 到 1500 μm 和 300 到 1000 μm 范围内。

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