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Wind-blown dust and its impacts on particulate matter pollution in Northern China

Current and future scenarios

Datos Bibliográficos

ID15549574
AutoresSong Liu (0000-0002-2248-4283, ETH Zurich), Jia Xing (0000-0002-3716-8646, State Key Joint Laboratory of Environment Simulation and Pollution Control, autor de correspondencia), Shovan Kumar Sahu (State Key Joint Laboratory of Environment Simulation and Pollution Control), Xiliang Liu (0000-0001-5882-9389, University of Chinese Academy of Sciences), Shuchang Liu (0000-0003-4017-3224, ETH Zurich), Yueqi Jiang (0000-0001-7900-3084, State Key Joint Laboratory of Environment Simulation and Pollution Control), Hongliang Zhang (0000-0002-6159-5234, Fudan University), Siwei Li (0000-0003-1985-8149, Wuhan University), Dian Ding (0000-0001-5691-335X, University of Helsinki), Xing Chang (0009-0005-5622-4198, State Key Joint Laboratory of Environment Simulation and Pollution Control, autor de correspondencia), Shuxiao Wang (0000-0001-9727-1963, State Key Joint Laboratory of Environment Simulation and Pollution Control)
Año2021
Volumen16
Número11
Páginas114041-114041
Fecha de publicación2021-10-22
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ac31ec
OpenAlexW3211204687
IdiomaEN
Referencias citadas69

Northern China experienced two intense dust storms in March 2021, leading to reduced visibility and excessive particulate pollution. Understanding the cause of such extreme phenomena is important for further prevention. This study successfully reproduced the extreme dust storms using the Community Multiscale Air Quality model with refined bulk density of different soil types and improved spatial resolution. The wind-blown PM 2.5 and PM 10 are estimated to be around 15 and 120 μ g m −3 in dust source areas (equal 9.6% and 31.0% in average of China), resulting in 1.1 and 2.0 times increases in PM 2.5 and PM 10 concentrations in populated regions of the Middle Yellow River Basin and the Beijing-Tianjin-Hebei area. The critical threshold friction velocity is the key parameter to judge whether wind-blown dust occurs. Dust flux is sensitive to the bulk soil density (increased by 4.2% and 12.6% for PM 2.5 and PM 10 after refined soil bulk density) and resolution (increased by 13.5% and 3.5% for PM 2.5 and PM 10 from 27 km to 9 km). Such results demonstrated the strong correlation between wind speed, frequency, and intensity of dust phenomena from 2013 to 2021. The wind speed can be further enhanced in dust source areas even in the context of a decline in the national average, leading to more frequent and persistent dust storms in March 2050. Only relying on coordinated emission reductions to mitigate climate change, wind-blown dust in northern China still poses considerable potential risks to air quality. Urgent actions should also be taken to improve land-use and land-cover to reduce the area of dust sources

Aeolian processes · Atmospheric sciences · Beijing · China · Climatology · Context (archaeology · Dust storm · Geography · Meteorology · Particulates · Storm · Wind speed · Aeolian processes and effects · Atmospheric aerosols and clouds · Atmospheric chemistry and aerosols · Environmental Science · Geology · Pollution

  • The Model of Emissions of Gases and Aerosols from Nature version 2.1 (Megan2.1)

    Open Access•Alex Guenther, A B Guenther et al.•Geoscientific Model Development•2012

  • Effects of Asian dust-derived particulate matter on ST-elevation myocardial infarction

    Open Access•Suji Lee, Whanhee Lee et al.•BMC Public Health•2021

  • Chinese Yellow Dust and Korean infant health

    Open Access•Duha T Altindag, Deokrye Baek et al.•Social Science & Medicine•2017

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