Terminal settling and rising velocity prediction of macroplastics: Medical face masks as newly emerged objects of concern

被引:2
作者
Born, Maximilian P. [1 ]
Junge, Lara-Victoria [1 ]
Bruell, Catrina [1 ]
Waldschlager, Kryss [2 ]
Schuettrumpf, Holger [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Hydraul Engn & Water Resources Management IWW, Mies van der Rohe Str 17, D-52074 Aachen, Germany
[2] Wageningen Univ & Res, Hydrol & Quantitat Water Management Grp, Wageningen, Netherlands
关键词
Macroplastic; Transport behavior; Plastic pollution; Shape coefficient; Face masks; MICROPLASTICS; TRANSPORT; EXPOSURE; PLASTICS;
D O I
10.1016/j.scitotenv.2023.167922
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The widespread use of medical face masks during the SARS-CoV-2 pandemic has significantly increased plastic waste, with a considerable proportion of these masks ending up in the environment. As these masks are trans-ported through wind and surface runoff, they accumulate in water bodies, leading to pollution and potential environmental risks. Understanding the transport behavior of these macroplastic items is crucial for addressing the pollution problem effectively. This study focuses on predicting the terminal settling and rising velocities of medical face masks, considering their unique shape and composition, aiding upcoming research with base data for, e.g., numerical transport simulations. Three different mask types, including surgical face masks, FFP2-standard face masks, and non-medical reusable face masks, were investigated in various shapes, and modified transport formulas that take into account the shape factor and sphere-equivalent radius of the masks to accu-rately predict their terminal settling and rising velocities were tested for applicability. The results reveal that the unique shapes of masks influence the terminal settling and rising velocity to a greater extent than their density difference to water. The absolute mean terminal velocities ranged from 0.05 to 0.3 m/s. Understanding the transport behavior of the studied face masks provides valuable insights for managing and mitigating the pollution caused by discarded face masks in water bodies and helps to develop effective strategies for envi-ronmental protection. Furthermore, the findings highlight the need for comprehensive laboratory studies to investigate the rising and settling velocities of common macroplastic items, as they are expected to vary in their hydrodynamic behavior significantly.
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页数:9
相关论文
共 44 条
  • [1] Al-Zawaidah H, 2021, ENVIRON SCI-PROC IMP, V23, P535, DOI [10.1039/D0EM00517G, 10.1039/d0em00517g]
  • [2] Allison AL, 2020, ENVIRONMENT
  • [3] Microplastics in the marine environment
    Andrady, Anthony L.
    [J]. MARINE POLLUTION BULLETIN, 2011, 62 (08) : 1596 - 1605
  • [4] [Anonymous], 1937, Transactions of the American Society of Civil Engineers, DOI [DOI 10.1061/TACEAT.0004872, 10.1061/TACEAT.0004872]
  • [5] Transition to endemicity: Understanding COVID-19
    Antia, Rustom
    Halloran, M. Elizabeth
    [J]. IMMUNITY, 2021, 54 (10) : 2172 - 2176
  • [6] Weathering Plastics as a Planetary Boundary Threat: Exposure, Fate, and Hazards
    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
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2021, 55 (11) : 7246 - 7255
  • [7] Determination of Microplastics? Vertical Concentration Transport (Rouse) Profiles in Flumes
    Born, Maximilian P.
    Bruell, Catrina
    Schaefer, Dirk
    Hillebrand, Gudrun
    Schuettrumpf, Holger
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2023, 57 (14) : 5569 - 5579
  • [8] From model to nature-A review on the transferability of marine (micro-) plastic fragmentation studies
    Born, Maximilian P.
    Brull, Catrina
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2022, 811
  • [9] Chinese Standard, FZ/T 73049-2014
  • [10] Estimating marine plastic pollution from COVID-19 face masks in coastal regions
    Chowdhury, Hemal
    Chowdhury, Tamal
    Sait, Sadiq M.
    [J]. MARINE POLLUTION BULLETIN, 2021, 168