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Xu, Rui; Yu, Yan; Meng, Xianglei; Xue, Huiwen; Zhao, Chuanfeng; Lin, Jintai (2025) Atmospheric Convection and Aerosol Absorption Boost Wildfire Smoke Injection. Geophysical Research Letters, 52 (14). doi:10.1029/2025gl115989

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Reference TypeJournal (article/letter/editorial)
TitleAtmospheric Convection and Aerosol Absorption Boost Wildfire Smoke Injection
JournalGeophysical Research Letters
AuthorsXu, RuiAuthor
Yu, YanAuthor
Meng, XiangleiAuthor
Xue, HuiwenAuthor
Zhao, ChuanfengAuthor
Lin, JintaiAuthor
Year2025 (July 28)Volume52
Issue14
PublisherAmerican Geophysical Union (AGU)
DOIdoi:10.1029/2025gl115989Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18770978Long-form Identifiermindat:1:5:18770978:3
GUID0
Full ReferenceXu, Rui; Yu, Yan; Meng, Xianglei; Xue, Huiwen; Zhao, Chuanfeng; Lin, Jintai (2025) Atmospheric Convection and Aerosol Absorption Boost Wildfire Smoke Injection. Geophysical Research Letters, 52 (14). doi:10.1029/2025gl115989
Plain TextXu, Rui; Yu, Yan; Meng, Xianglei; Xue, Huiwen; Zhao, Chuanfeng; Lin, Jintai (2025) Atmospheric Convection and Aerosol Absorption Boost Wildfire Smoke Injection. Geophysical Research Letters, 52 (14). doi:10.1029/2025gl115989
In(2025, July) Geophysical Research Letters Vol. 52 (14). American Geophysical Union (AGU)

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Copernicus Atmosphere Monitoring Service. (2020).CAMS global reanalysis (EAC4)[Dataset].Copernicus Atmosphere Monitoring Service (CAMS) Atmosphere Data Store.https://doi.org/10.24381/d58bbf47
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Giglio L. &Justice C.(2021).MODIS/terra thermal anomalies/fire 5‐Min L2 swath 1km V061[Dataset].NASA EOSDIS Land Processes Distributed Active Archive Center DAAC.https://doi.org/10.5067/MODIS/MOD14.061
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Hersbach H. Bell B. Berrisford P. Biavati G. Horånyi A. Muñoz Sabater J. et al. (2023a).ERA5 hourly data on pressure levels from 1940 to present[Dataset].Copernicus Climate Change Service (C3S) Climate Data Store (CDS).https://doi.org/10.24381/cds.bd0915c6
Hersbach H. Bell B. Berrisford P. Biavati G. Horånyi A. Muñoz Sabater J. et al. (2023b).ERA5 hourly data on single levels from 1940 to present[Dataset].Copernicus Climate Change Service (C3S) Climate Data Store (CDS).https://doi.org/10.24381/cds.adbb2d47
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Koning H. W. D. (1985) Bulletin of the World Health Organization Biomass fuel combustion and health 63, 11
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NASA/LARC/SD/ASDC. (2022b).CALIPSO lidar level 2 vertical feature mask (VFM)[Dataset].NASA Langley Atmospheric Science Data Center DAAC V4–51.https://doi.org/10.5067/CALIOP/CALIPSO/CAL_LID_L2_VFM‐Standard‐V4‐51
NASA/LARC/SD/ASDC. (2022a).CALIPSO lidar level 2 aerosol profile V4‐51[Dataset].NASA Langley Atmospheric Science Data Center DAAC.https://doi.org/10.5067/CALIOP/CALIPSO/CAL_LID_L2_05kmAPro‐Standard‐V4‐51
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Not Yet Imported: - journal-article : 10.1175/2009jtecha1281.1

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Xu R.(2025).XuRui1204/Two‐step‐smoke‐plume‐height‐model: Atmospheric convection and aerosol absorption boost wildfire smoke injection (wildfire)[Software].Zenodo.https://doi.org/10.5281/zenodo.15527018


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