Dust aerosols significantly affect the Earth's climate, not only as a source of radiation, but also as ice nuclei, cloud condensation nuclei and thus affect CO2 exchange between the atmosphere and the ocean. However, there are large deviations in dust model simulations due to limited observations on a global scale. Based on ten initial Climate Models Intercomparison Project Phase Six (CMIP6) models, the multi-model ensemble (MME) approximately underestimates future changes in global dust mass loading (DML) by 7-21%, under four scenarios of shared socioeconomic pathways (SSPs). Therefore, this study primarily constrains the CMIP6 simulations under various emission scenarios by applying an equidistant cumulative distribution function (EDCDF) method combined with the Modern-Era Retrospective Analysis for Research and Applications version 2 (MERRA2) datasets based on observation assimilation. We find that the results (19.0-26.1 Tg) for 2000-2014 are closer to MERRA2 (20.0-24.8 Tg) than the initial simulations (4.4-37.5 Tg), with model deviation reduced by up to 75.6%. We emphasize that the DML during 2081-2100 is expected to increase significantly by 0.023 g m-2 in North Africa and the Atlantic region, while decreasing by 0.006 g m-2 in the Middle East and East Asia. In comparison with internal variability and scenario uncertainty, model uncertainty accounts for more than 70% of total uncertainty. When bias correction is applied, model uncertainty significantly decreases by 65% to 90%, resulting in a similar variance contribution to internal variability.
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Bangladesh Rice Research Institute,Farm Machinery and Postharvest Technology DivisionBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Mohammad Kamruzzaman
Md. Shariot-Ullah
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Bangladesh Agricultural University,Department of Irrigation and Water ManagementBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Md. Shariot-Ullah
Rafiqul Islam
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Bangladesh Agricultural University,Department of Farm Power and MachineryBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Rafiqul Islam
Mohammad Golam Mostofa Amin
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Bangladesh Agricultural University,Department of Irrigation and Water ManagementBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Mohammad Golam Mostofa Amin
Hossain Mohammad Touhidul Islam
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Begum Rokeya University,Department of Disaster ManagementBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Hossain Mohammad Touhidul Islam
Sharif Ahmed
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International Rice Research Institute,Department of MeteorologyBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Sharif Ahmed
Shabista Yildiz
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Bangladesh Office,Department of Agriculture and FisheriesBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Shabista Yildiz
Abdul Muktadir
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University of Dhaka,Faculty of Civil EngineeringBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
Abdul Muktadir
Shamsuddin Shahid
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机构:
Weed Science,undefinedBangladesh Rice Research Institute,Farm Machinery and Postharvest Technology Division
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Uganda Natl Meteorol Author, Kampala, UgandaNanjing Univ Informat Sci & Technol, Binjiang Coll, Wuxi 214105, Jiangsu, Peoples R China
Ojara, Moses
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Mumo, Richard
Chehbouni, Abdelghani
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Mohammed VI Polytech Univ, Int Water Res Inst, Ben Guerir, MoroccoNanjing Univ Informat Sci & Technol, Binjiang Coll, Wuxi 214105, Jiangsu, Peoples R China
Chehbouni, Abdelghani
Ongoma, Victor
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机构:
Mohammed VI Polytech Univ, Int Water Res Inst, Ben Guerir, MoroccoNanjing Univ Informat Sci & Technol, Binjiang Coll, Wuxi 214105, Jiangsu, Peoples R China