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生物膜和颗粒物理特性对微塑料纤维和薄片上升和下降速度的影响。

Effects of Biofilms and Particle Physical Properties on the Rising and Settling Velocities of Microplastic Fibers and Sheets.

机构信息

UMR5805 EPOC, CNRS, Université Bordeaux, 33615 Pessac, France.

Université Pau & Pays Adour/E2S UPPA, Laboratoire des Sciences de l'Ingénieur Appliquées à la Méchanique et au Génie Electrique─Fédération IPRA, EA4581, 64600 Anglet, France.

出版信息

Environ Sci Technol. 2022 Jun 21;56(12):8114-8123. doi: 10.1021/acs.est.2c01302. Epub 2022 May 20.

Abstract

Vertical dynamics of microplastics (MPs) in the water column are complex and not fully understood due to the diversity of environmental MPs and the impact of weathering and biofouling on their dynamical properties. In this study, we investigate the effects of the particle properties and biofilm on the vertical (settling or rising) velocity of microplastic sheets and fibers under laboratory conditions. The experiments focus on three types of MPs (polyester PES fibers, polyethylene terephthalate PET sheets, and polypropylene PP sheets) of nine sizes and two degrees of biological colonization. Even though pristine PES fibers and PET sheets had a similar density, the sinking velocity of fibers was much smaller and independent of their length. The settling or rising velocity of sheets increased with the particle size up to a threshold and then decreased in the wake of horizontal oscillations in large particles. Biofilms had unexpected effects on vertical velocities. Irregular biofilm distributions can trigger motion instabilities that decrease settling velocities of sheets despite the increase in density. Biofilms can also modify the orientation of fibers, which may increase their settling velocity. Finally, we selected the most performant theoretical formulation for each type of particle and proposed modifications to consider the effect of biofilm distribution.

摘要

由于环境微塑料的多样性以及风化和生物附着对其动力学特性的影响,水层中微塑料(MPs)的垂直动力学十分复杂,目前尚未完全了解。在这项研究中,我们在实验室条件下研究了颗粒特性和生物膜对微塑料片和纤维垂直(沉降或上升)速度的影响。实验集中在三种类型的 MPs(聚酯 PES 纤维、聚对苯二甲酸乙二醇酯 PET 片和聚丙烯 PP 片)的九个尺寸和两种生物定殖程度上。尽管原始的 PES 纤维和 PET 片具有相似的密度,但纤维的沉降速度要小得多,且与长度无关。片材的沉降或上升速度随颗粒尺寸的增加而增加,直到达到一个阈值,然后在大颗粒的水平振荡的尾流中减小。生物膜对垂直速度有意外的影响。不规则的生物膜分布会引发运动不稳定,尽管密度增加,但仍会降低片材的沉降速度。生物膜还可以改变纤维的方向,从而可能增加其沉降速度。最后,我们为每种类型的颗粒选择了性能最佳的理论公式,并提出了修改建议,以考虑生物膜分布的影响。

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