| Reference Type | Journal (article/letter/editorial) |
|---|
| Title | Atmospheric Convection and Aerosol Absorption Boost Wildfire Smoke Injection |
|---|
| Journal | Geophysical Research Letters |
|---|
| Authors | Xu, Rui | Author |
|---|
| Yu, Yan | Author |
| Meng, Xianglei | Author |
| Xue, Huiwen | Author |
| Zhao, Chuanfeng | Author |
| Lin, Jintai | Author |
| Year | 2025 (July 28) | Volume | 52 |
|---|
| Issue | 14 |
|---|
| Publisher | American Geophysical Union (AGU) |
|---|
| DOI | doi:10.1029/2025gl115989Search in ResearchGate |
|---|
| Generate Citation Formats |
| Mindat Ref. ID | 18770978 | Long-form Identifier | mindat:1:5:18770978:3 |
|---|
|
| GUID | 0 |
|---|
| Full Reference | 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 |
|---|
| Plain Text | 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 |
|---|
| In | (2025, July) Geophysical Research Letters Vol. 52 (14). American Geophysical Union (AGU) |
|---|
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.
 | Bourgeois, Ilann, Peischl, Jeff, Neuman, J. Andrew, Brown, Steven S., Thompson, Chelsea R., Aikin, Kenneth C., Allen, Hannah M., Angot, HĂ©lĂšne, Apel, Eric C., Baublitz, Colleen B., Brewer, Jared F., Campuzano-Jost, Pedro, Commane, RĂłisĂn, Crounse, John D., Daube, Bruce C., DiGangi, Joshua P., Diskin, Glenn S., Emmons, Louisa K., Fiore, Arlene M., Gkatzelis, Georgios I., Hills, Alan, Hornbrook, Rebecca S., Huey, L. Gregory, Jimenez, Jose L., Kim, Michelle, Lacey, Forrest, McKain, Kathryn, Murray, Lee T., Nault, Benjamin A., Parrish, David D., Ray, Eric, Sweeney, Colm, Tanner, David, Wofsy, Steven C., Ryerson, Thomas B. (2021) Large contribution of biomass burning emissions to ozone throughout the global remote troposphere. Proceedings of the National Academy of Sciences, 118 (52) doi:10.1073/pnas.2109628118 |
| Copernicus Atmosphere Monitoring Service. (2020).CAMS global reanalysis (EAC4)[Dataset].Copernicus Atmosphere Monitoring Service (CAMS) Atmosphere Data Store.https://doi.org/10.24381/d58bbf47 |
 | |
 | |
| () |
 | |
| () |
| () |
| Giglio L. &Justice C.(2021).MODIS/terra thermal anomalies/fire 5âMin L2 swath 1km V061[Dataset].NASA EOSDIS Land Processes Distributed Active Archive Center DAAC.https://doi.org/10.5067/MODIS/MOD14.061 |
 | |
| () |
| () |
| () |
| 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 |
| () |
| () |
| () |
 | Kahn, Ralph A., Li, W.-H., Moroney, Catherine, Diner, David J., Martonchik, John V., Fishbein, Evan (2007) Aerosol source plume physical characteristics from space-based multiangle imaging. Journal of Geophysical Research, 112. doi:10.1029/2006jd007647 |
| () |
| () |
| () |
| Koning H. W. D. (1985) Bulletin of the World Health Organization Biomass fuel combustion and health 63, 11 |
 | |
| () |
| () |
 | Lu, Zheng, Liu, Xiaohong, Ke, Ziming, Zhang, Kai, Ma, PoâLun, Fan, Jiwen (2024) Incorporating an Interactive Fire PlumeâRise Model in the DOE's Energy Exascale Earth System Model Version 1 (E3SMv1) and Examining Aerosol Radiative Effect. Journal of Advances in Modeling Earth Systems, 16 (1) doi:10.1029/2023ms003818 |
 | |
| () |
| () |
| NASA/LARC/SD/ASDC. (2022b).CALIPSO lidar level 2 vertical feature mask (VFM)[Dataset].NASA Langley Atmospheric Science Data Center DAAC V4â51.https://doi.org/10.5067/CALIOP/CALIPSO/CAL_LID_L2_VFMâStandardâV4â51 |
| NASA/LARC/SD/ASDC. (2022a).CALIPSO lidar level 2 aerosol profile V4â51[Dataset].NASA Langley Atmospheric Science Data Center DAAC.https://doi.org/10.5067/CALIOP/CALIPSO/CAL_LID_L2_05kmAProâStandardâV4â51 |
 | |
| () |
| () |
| () |
| () |
| Not Yet Imported: - journal-article : 10.1175/2009jtecha1281.1
If you would like this item imported into the Digital Library, please contact us quoting Journal ID |
 | |
| () |
| () |
| () |
 | |
 | Tosca, M. G., Randerson, J. T., Zender, C. S., Nelson, D. L., Diner, D. J., Logan, J. A. (2011) Dynamics of fire plumes and smoke clouds associated with peat and deforestation fires in Indonesia. Journal of Geophysical Research, 116. doi:10.1029/2010jd015148 |
 | |
| () |
| () |
 | |
| Xu R.(2025).XuRui1204/Twoâstepâsmokeâplumeâheightâmodel: Atmospheric convection and aerosol absorption boost wildfire smoke injection (wildfire)[Software].Zenodo.https://doi.org/10.5281/zenodo.15527018 |
 | Yu, Pengfei, Toon, Owen B., Bardeen, Charles G., Zhu, Yunqian, Rosenlof, Karen H., Portmann, Robert W., Thornberry, Troy D., Gao, Ru-Shan, Davis, Sean M., Wolf, Eric T., de Gouw, Joost, Peterson, David A., Fromm, Michael D., Robock, Alan (2019) Black carbon lofts wildfire smoke high into the stratosphere to form a persistent plume. Science, 365 (6453). 587-590 doi:10.1126/science.aax1748 |
 | Zhang, Yuwei, Fan, Jiwen, Logan, Timothy, Li, Zhanqing, Homeyer, Cameron R. (2019) Wildfire Impact on Environmental Thermodynamics and Severe Convective Storms. Geophysical Research Letters, 46 (16) 10082-10093 doi:10.1029/2019gl084534 |
These are possibly similar items as determined by title/reference text matching only.