Experimental study on the motion characteristics and critical hydraulic parameters of microplastics in a freshwater environment†

IF 4.3 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL Environmental Science: Processes & Impacts Pub Date : 2024-12-13 DOI:10.1039/D4EM00574K
Ming Dou, Zhen Wang, Yuxuan Li, Bin Sun, Yongyong Zhang, Yuze Zhou and Ruipeng Jia
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Abstract

The migration behavior of microplastics in water is affected by many factors; in particular, the migration mechanism of microplastics in the terrestrial freshwater environment is more complicated than that in the marine environment. In order to understand the migration behavior of microplastics in the freshwater environment, the hydraulic parameter thresholds of different types of microplastics in water were identified based on hydraulic experiments and force analysis methods. The results show that the motion state of microplastics is affected by their own internal factors and external environmental factors, and the flow rate is the key external factor affecting the change of their motion state. In the vertical direction, the higher the density, the rougher the environment, and the closer the shape to the flake, the greater the critical starting flow velocity and the critical resuspension flow velocity. The settling velocities, critical initiation velocities, and critical resuspension velocities of microplastics range from 0.05 to 0.17 m s−1, 0.03 to 0.44 m s−1, and 0.251 to 0.83 m s−1, respectively. Horizontally, the bottom rolling velocities of microplastics vary significantly. These velocities are positively correlated with water flow velocity but are inversely proportional to the density of the microplastics and the roughness of the substrate. By combining experimental data, mathematical expressions for the critical hydraulic parameters of microplastics were derived, showing improved accuracy compared to traditional methods. This paper explores the trajectory of different types of microplastics after entering the water body and analyzes their migration mechanism in the river. The research results have certain theoretical guiding significance for revealing the migration law of microplastics in the freshwater environment.

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微塑料在淡水环境中的运动特性及关键水力参数试验研究。
微塑料在水中的迁移行为受多种因素的影响;特别是,微塑料在陆地淡水环境中的迁移机制比在海洋环境中的迁移机制更为复杂。为了了解微塑料在淡水环境中的迁移行为,基于水力实验和力分析方法,确定了不同类型微塑料在水中的水力参数阈值。结果表明,微塑料的运动状态受其自身内部因素和外部环境因素的影响,流速是影响其运动状态变化的关键外部因素。在垂直方向上,密度越高,环境越粗糙,形状越接近片状,临界启动流速和临界再悬浮流速越大。微塑料的沉降速度、临界起始速度和临界再悬浮速度分别为0.05 ~ 0.17 m s-1、0.03 ~ 0.44 m s-1和0.251 ~ 0.83 m s-1。水平方向上,微塑料的底部滚动速度变化显著。这些速度与水流速度正相关,但与微塑料的密度和基材的粗糙度成反比。结合实验数据,导出了微塑料临界水力参数的数学表达式,与传统方法相比,精度有所提高。本文探讨了不同类型微塑料进入水体后的轨迹,并分析了其在河流中的迁移机制。研究结果对揭示微塑料在淡水环境中的迁移规律具有一定的理论指导意义。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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