Effects of Shape and Size on Microplastic Atmospheric Settling Velocity

被引:18
作者
Preston, Colette A. A. [1 ]
Neuman, Cheryl L. McKenna L. [1 ]
Aherne, Julian [1 ]
机构
[1] Trent Univ, Sch Environm, Peterborough, ON K9J 0G2, Canada
关键词
microplastics; atmosphericdispersion; settlingvelocity; drift velocity; fall column; laser Doppler anemometry; DRAG COEFFICIENT; NONSPHERICAL PARTICLES; MARINE-ENVIRONMENT; DEPOSITION; PLASTICS; THREAT;
D O I
10.1021/acs.est.3c03671
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Fall column experiments usinglaser Doppler anemometry showthat the terminal atmospheric settling velocity of microplastic particlesis strongly influenced by their size and shape. Microplastics (MPs) have been foundin all terrestrial,marine,and riparian environments, including remote regions. This impliesthat atmospheric transport is an important pathway when consideringMP sources and global budgets. However, limited empirical data existto aid in effective development and parameterization of MP atmospherictransport models. This study measured the atmospheric settling andhorizontal drift velocities of various sizes and shapes of MPs intwo specially designed settling columns using a laser Doppler anemometer.The settling velocities were generally lower than modeled values,while shape exerted the most significant influence on the rate ofsettling. Rather than conforming to well-established, power-law models,each class of MP exhibited a linear but different relationship betweenMP size and settling velocity, with markedly higher slopes for thespheres and cylinders as compared to the films and fibers. Shape alsohad a substantial influence on particle drift, with the fibers andfilms exhibiting the greatest horizontal motion, as suggestive oftheir changing orientation in response to particle interactions andfluid drag. As a consequence, microplastic particles identified withinatmospheric deposition samples collected at a single point may derivefrom entirely different sources representing a wide range in transportdistance.
引用
收藏
页码:11937 / 11947
页数:11
相关论文
共 59 条
[1]  
Adopt-a-Beach A. A. B., 2020, SCI ASS PLAST POLL E
[2]   Microplastics in the environment: A critical review of current understanding and identification of future research needs [J].
Akdogan, Zeynep ;
Guven, Basak .
ENVIRONMENTAL POLLUTION, 2019, 254
[3]  
ALLEN JRL, 1984, Sedimentary structures, their character and physical basis, V1
[4]   Atmospheric transport and deposition of microplastics in a remote mountain catchment [J].
Allen, Steve ;
Allen, Deonie ;
Phoenix, Vernon R. ;
Le Roux, Gael ;
Jimenez, Pilar Durantez ;
Simonneau, Anaelle ;
Binet, Stephane ;
Galop, Didier .
NATURE GEOSCIENCE, 2019, 12 (05) :339-+
[5]   Weathering Plastics as a Planetary Boundary Threat: Exposure, Fate, and Hazards [J].
Arp, Hans Peter H. ;
Kuehnel, Dana ;
Rummel, Christoph ;
MacLeod, Matthew ;
Potthoff, Annegret ;
Reichelt, Sophia ;
Rojo-Nieto, Elisa ;
Schmitt-Jansen, Mechthild ;
Sonnenberg, Johanna ;
Toorman, Erik ;
Jahnke, Annika .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2021, 55 (11) :7246-7255
[6]   On the characterization of size and shape of irregular particles [J].
Bagheri, G. H. ;
Bonadonna, C. ;
Manzella, I. ;
Vonlanthen, P. .
POWDER TECHNOLOGY, 2015, 270 :141-153
[7]   On the drag of freely falling non-spherical particles [J].
Bagheri, Gholamhossein ;
Bonadonna, Costanza .
POWDER TECHNOLOGY, 2016, 301 :526-544
[8]   Marine environment microfiber contamination: Global patterns and the diversity of microparticle origins [J].
Barrows, A. P. W. ;
Cathey, S. E. ;
Petersen, C. W. .
ENVIRONMENTAL POLLUTION, 2018, 237 :275-284
[9]   White and wonderful? Microplastics prevail in snow from the Alps to the Arctic [J].
Bergmann, Melanie ;
Muetzel, Sophia ;
Primpke, Sebastian ;
Tekman, Mine B. ;
Trachsel, Jurg ;
Gerdts, Gunnar .
SCIENCE ADVANCES, 2019, 5 (08)
[10]   Plastic rain in protected areas of the United States [J].
Brahney, Janice ;
Hallerud, Margaret ;
Heim, Eric ;
Hahnenberger, Maura ;
Sukumaran, Suja .
SCIENCE, 2020, 368 (6496) :1257-+