Improved Settling Velocity for Microplastic Fibers: A New Shape-Dependent Drag Model

微塑料 沉淀 阻力 形状因子 阻力系数 停留时间(流体动力学) 环境科学 机械 地质学 环境工程 岩土工程 物理 几何学 数学 海洋学
作者
Jiaqi Zhang,Clarence Edward Choi
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (2): 962-973 被引量:96
标识
DOI:10.1021/acs.est.1c06188
摘要

Microplastics are abundant in aquatic environments and are an emerging environmental concern. The prediction of their settling velocities is central to predictions of the residence time and concentration depth profiles of microplastics in aquatic environments. The main scientific challenge in improving the current understanding of the settling motions of microplastics is that existing drag models are deficient at reasonably predicting the settling velocities of various microplastics, especially microplastic fibers. This is because the shape factors used in the existing drag models cannot morphologically distinguish fibers from fragments and films. In this study, a new shape factor, specifically the Aschenbrenner shape factor, is proposed as a vehicle to explicitly distinguish among the morphologies of fibers, films, and fragments. With this new shape factor, a new drag model is developed and then systematically evaluated against the unique set of data provided by new experiments conducted in this study along with four other published data sets in the literature. The proposed model allows the prediction of the terminal settling velocity of microplastic fibers more accurately than existing drag models. Moreover, the new model has also shown its applicability to microplastic films and fragments. Notwithstanding, the new model appears deficient at reasonably predicting the terminal settling velocity of weathered microplastics in the field, which requires further investigations.
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