The following 96 publications cited the product Global Fire Emissions Database, Version 2.1.
Year | Citation |
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2022 | Ginzburg, V.A., S.V. Kostrykin, A.P. Revokatova, A.G. Ryaboshapko, A.S. Pastukhova, V.N. Korotkov, and P.D. Polumieva. 2022. Model Estimates of Black Carbon Transfer Probabilities from Russian Forest Fires to Arctic and Its Possible Impact on Climate. Izvestiya, Atmospheric and Oceanic Physics. 58(6):635-644. https://doi.org/10.1134/S000143382206007X |
2019 | Chen, L., J. Zhu, H. Liao, Y. Gao, Y. Qiu, M. Zhang, Z. Liu, N. Li, and Y. Wang. 2019. Assessing the formation and evolution mechanisms of severe haze pollution in the Beijing-Tianjin-Hebei region using process analysis. Atmospheric Chemistry and Physics. 19(16):10845-10864. https://doi.org/10.5194/acp-19-10845-2019 |
2018 | Chen, L., M. Zhang, J. Zhu, Y. Wang, and A. Skorokhod. 2018. Modeling Impacts of Urbanization and Urban Heat Island Mitigation on Boundary Layer Meteorology and Air Quality in Beijing Under Different Weather Conditions. Journal of Geophysical Research: Atmospheres. 123(8):4323-4344. https://doi.org/10.1002/2017JD027501 |
2018 | Gao, Y. and M. Zhang. 2018. Changes in the diurnal variations of clouds and precipitation induced by anthropogenic aerosols over East China in August 2008. Atmospheric Pollution Research. 9(3):513-525. https://doi.org/10.1016/j.apr.2017.11.013 |
2017 | Gromov, S., C.A.M. Brenninkmeijer, and P. Jockel. 2017. Uncertainties of fluxes and <sup>13</sup>C [?] <sup>12</sup>C ratios of atmospheric reactive-gas emissions. Atmospheric Chemistry and Physics. 17(13):8525-8552. https://doi.org/10.5194/acp-17-8525-2017 |
2017 | Li, J., M. Zhang, F. Wu, Y. Sun, and G. Tang. 2017. Assessment of the impacts of aromatic VOC emissions and yields of SOA on SOA concentrations with the air quality model RAMS-CMAQ. Atmospheric Environment. 158:105-115. https://doi.org/10.1016/j.atmosenv.2017.03.035 |
2017 | Wu, L., H. Su, O.V. Kalashnikova, J.H. Jiang, C. Zhao, M.J. Garay, J.R. Campbell, and N. Yu. 2017. WRF-Chem simulation of aerosol seasonal variability in the San Joaquin Valley. Atmospheric Chemistry and Physics. 17(12):7291-7309. https://doi.org/10.5194/acp-17-7291-2017 |
2016 | LI, J.L., M.G. ZHANG, Y. GAO, and L. CHEN. 2016. Model analysis of secondary organic aerosol over China with a regional air quality modeling system (RAMS-CMAQ). Atmospheric and Oceanic Science Letters. 9(6):443-450. https://doi.org/10.1080/16742834.2016.1233798 |
2015 | Babenhauserheide, A., S. Basu, S. Houweling, W. Peters, and A. Butz. 2015. Comparing the CarbonTracker and TM5-4DVar data assimilation systems for CO<sub>2</sub> surface flux inversions. Atmospheric Chemistry and Physics. 15(17):9747-9763. https://doi.org/10.5194/acp-15-9747-2015 |
2015 | Chen, J.M., J.W. Fung, G. Mo, F. Deng, and T.O. West. 2015. Atmospheric inversion of surface carbon flux with consideration of the spatial distribution of US crop production and consumption. Biogeosciences. 12(2):323-343. https://doi.org/10.5194/bg-12-323-2015 |
2015 | Gao, Y., M. Zhang, X. Liu, and L. Wang. 2015. Change in diurnal variations of meteorological variables induced by anthropogenic aerosols over the North China Plain in summer 2008. Theoretical and Applied Climatology. 124(1-2):103-118. https://doi.org/10.1007/s00704-015-1403-4 |
2015 | Gao, Y., M. Zhang, Z. Liu, L. Wang, P. Wang, X. Xia, M. Tao, and L. Zhu. 2015. Modeling the feedback between aerosol and meteorological variables in the atmospheric boundary layer during a severe fog-haze event over the North China Plain. Atmospheric Chemistry and Physics. 15(8):4279-4295. https://doi.org/10.5194/acp-15-4279-2015 |
2015 | Khan, B., G. Stenchikov, B. Weinzierl, S. Kalenderski, and S. Osipov. 2015. Dust plume formation in the free troposphere and aerosol size distribution during the Saharan Mineral Dust Experiment in North Africa. Tellus B: Chemical and Physical Meteorology. 67(1):27170. https://doi.org/10.3402/tellusb.v67.27170 |
2015 | Mao, Y.H., Q.B. Li, D.K. Henze, Z. Jiang, D.B.A. Jones, M. Kopacz, C. He, L. Qi, M. Gao, W.M. Hao, and K.N. Liou. 2015. Estimates of black carbon emissions in the western United States using the GEOS-Chem adjoint model. Atmospheric Chemistry and Physics. 15(13):7685-7702. https://doi.org/10.5194/acp-15-7685-2015 |
2015 | Molina, L., G. Broquet, P. Imbach, F. Chevallier, B. Poulter, D. Bonal, B. Burban, M. Ramonet, L.V. Gatti, S.C. Wofsy, J.W. Munger, E. Dlugokencky, and P. Ciais. 2015. On the ability of a global atmospheric inversion to constrain variations of CO<sub>2</sub> fluxes over Amazonia. Atmospheric Chemistry and Physics. 15(14):8423-8438. https://doi.org/10.5194/acp-15-8423-2015 |
2015 | Pan, X., M. Chin, R. Gautam, H. Bian, D. Kim, P.R. Colarco, T.L. Diehl, T. Takemura, L. Pozzoli, K. Tsigaridis, S. Bauer, and N. Bellouin. 2015. A multi-model evaluation of aerosols over South Asia: common problems and possible causes. Atmospheric Chemistry and Physics. 15(10):5903-5928. https://doi.org/10.5194/acp-15-5903-2015 |
2015 | Rap, A., N.A.D. Richards, P.M. Forster, S.A. Monks, S.R. Arnold, and M.P. Chipperfield. 2015. Satellite constraint on the tropospheric ozone radiative effect. Geophysical Research Letters. 42(12):5074-5081. https://doi.org/10.1002/2015GL064037 |
2015 | Wang, M., B. Xu, S.D. Kaspari, G. Gleixner, V.F. Schwab, H. Zhao, H. Wang, and P. Yao. 2015. Century-long record of black carbon in an ice core from the Eastern Pamirs: Estimated contributions from biomass burning. Atmospheric Environment. 115:79-88. https://doi.org/10.1016/j.atmosenv.2015.05.034 |
2014 | Gao, Y. and M. Zhang. 2014. Modeling study on seasonal variation in aerosol extinction properties over China. Journal of Environmental Sciences. 26(1):97-109. https://doi.org/10.1016/S1001-0742(13)60385-X https://doi.org/10.1016/S1001-0742(13)60385-X |
2014 | Gao, Y., C. Zhao, X. Liu, M. Zhang, and L.R. Leung. 2014. WRF-Chem simulations of aerosols and anthropogenic aerosol radiative forcing in East Asia. Atmospheric Environment. 92:250-266. https://doi.org/10.1016/j.atmosenv.2014.04.038 |
2014 | Gu, D., Y. Wang, C. Smeltzer, and K.F. Boersma. 2014. Anthropogenic emissions of NOxover China: Reconciling the difference of inverse modeling results using GOME-2 and OMI measurements. Journal of Geophysical Research: Atmospheres. 119(12):7732-7740. https://doi.org/10.1002/2014JD021644 |
2014 | Han, X., M. Zhang, J. Gao, S. Wang, and F. Chai. 2014. Modeling analysis of the seasonal characteristics of haze formation in Beijing. Atmospheric Chemistry and Physics. 14(18):10231-10248. https://doi.org/10.5194/acp-14-10231-2014 |
2014 | Mao, Y.H., Q.B. Li, D. Chen, L. Zhang, W.M. Hao, and K.N. Liou. 2014. Top-down estimates of biomass burning emissions of black carbon in the Western United States. Atmospheric Chemistry and Physics. 14(14):7195-7211. https://doi.org/10.5194/acp-14-7195-2014 |
2013 | Al Razi K.M.H., Moritomi, Hiroshi. (2013). Numerical simulation for regional ozone concentrations: A case study by weather research and forecasting/chemistry (WRF/Chem) model. International Journal of Energy and Environment. 4 (6): 933-954 |
2013 | Al Razi, K. M. H., & Hiroshi, M.; (2013). Numerical simulation for regional ozone concentrations: A case study by weather research and forecasting/chemistry (WRF/Chem) model. International Journal of Energy and Environment. 4 (6): 933-954 |
2013 | Gu, D., Y. Wang, C. Smeltzer, and Z. Liu. 2013. Reduction in NOx Emission Trends over China: Regional and Seasonal Variations. Environmental Science & Technology. 47(22):12912-12919. https://doi.org/10.1021/es401727e |
2013 | Han, X., M. Zhang, J. Gao, S. Wang, and F. Chai. 2013. Modeling analysis of the seasonal characteristics of haze formation in Beijing. Atmospheric Chemistry and Physics Discussions. 13(11):30575-30610. https://doi.org/10.5194/acpd-13-30575-2013 |
2013 | Han, X., M. Zhang, J. Tao, L. Wang, J. Gao, S. Wang, and F. Chai. 2013. Modeling aerosol impacts on atmospheric visibility in Beijing with RAMS-CMAQ. Atmospheric Environment. 72:177-191. https://doi.org/10.1016/j.atmosenv.2013.02.030 |
2013 | Kato, E., T. Kinoshita, A. Ito, M. Kawamiya, and Y. Yamagata. 2013. Evaluation of spatially explicit emission scenario of land-use change and biomass burning using a process-based biogeochemical model. Journal of Land Use Science. 8(1):104-122. https://doi.org/10.1080/1747423X.2011.628705 |
2013 | Livesey, N.J., J.A. Logan, M.L. Santee, J.W. Waters, R.M. Doherty, W.G. Read, L. Froidevaux, and J.H. Jiang. 2013. Interrelated variations of O<sub>3</sub>, CO and deep convection in the tropical/subtropical upper troposphere observed by the Aura Microwave Limb Sounder (MLS) during 2004-2011. Atmospheric Chemistry and Physics. 13(2):579-598. https://doi.org/10.5194/acp-13-579-2013 |
2013 | Percival, C.J., O. Welz, A.J. Eskola, J.D. Savee, D.L. Osborn, D.O. Topping, D. Lowe, S.R. Utembe, A. Bacak, G. McFiggans, M.C. Cooke, P. Xiao, A.T. Archibald+, M.E. Jenkin, R.G. Derwent, I. Riipinen, D.W.K. Mok, E.P.F. Lee, J.M. Dyke, C.A. Taatjes, and D.E. Shallcross. 2013. Regional and global impacts of Criegee intermediates on atmospheric sulphuric acid concentrations and first steps of aerosol formation. Faraday Discussions. 165:45. https://doi.org/10.1039/C3FD00048F |
2013 | Richards, N.A.D., S.R. Arnold, M.P. Chipperfield, G. Miles, A. Rap, R. Siddans, S.A. Monks, and M.J. Hollaway. 2013. The Mediterranean summertime ozone maximum: global emission sensitivities and radiative impacts. Atmospheric Chemistry and Physics. 13(5):2331-2345. https://doi.org/10.5194/acp-13-2331-2013 |
2013 | Wu, J., J. Guo, and D. Zhao. 2013. Characteristics of aerosol transport and distribution in East Asia. Atmospheric Research. 132-133:185-198. https://doi.org/10.1016/j.atmosres.2013.05.018 |
2013 | Wu, L., H. Su, and J.H. Jiang. 2013. Regional simulation of aerosol impacts on precipitation during the East Asian summer monsoon. Journal of Geophysical Research: Atmospheres. 118(12):6454-6467. https://doi.org/10.1002/jgrd.50527 |
2012 | Allen, M., D. Erickson, W. Kendall, J. Fu, L. Ott, and S. Pawson. 2012. The influence of internal model variability in GEOS-5 on interhemispheric CO2exchange. Journal of Geophysical Research: Atmospheres. 117(D10):n/a-n/a. https://doi.org/10.1029/2011JD017059 |
2012 | Auby, A. (2012). Modélisation à haute résolution du transport de polluants à longue distance. Sciences de lÍ Environnement, Universitè Pierre et Marie Curie-Paris VI, Paris. |
2012 | Chatterjee, A., A.M. Michalak, J.L. Anderson, K.L. Mueller, and V. Yadav. 2012. Toward reliable ensemble Kalman filter estimates of CO2fluxes. Journal of Geophysical Research: Atmospheres. 117(D22):n/a-n/a. https://doi.org/10.1029/2012JD018176 |
2012 | Deeter, M.N., H.M. Worden, D.P. Edwards, J.C. Gille, and A.E. Andrews. 2012. Evaluation of MOPITT retrievals of lower-tropospheric carbon monoxide over the United States. Journal of Geophysical Research: Atmospheres. 117(D13):n/a-n/a. https://doi.org/10.1029/2012JD017553 |
2012 | Diehl, T., A. Heil, M. Chin, X. Pan, D. Streets, M. Schultz, and S. Kinne. 2012. Anthropogenic, biomass burning, and volcanic emissions of black carbon, organic carbon, and SO<sub>2</sub> from 1980 to 2010 for hindcast model experiments. Atmospheric Chemistry and Physics Discussions. 12(9):24895-24954. https://doi.org/10.5194/acpd-12-24895-2012 |
2012 | Fu, J.S., X. Dong, Y. Gao, D.C. Wong, and Y.F. Lam. 2012. Sensitivity and linearity analysis of ozone in East Asia: The effects of domestic emission and intercontinental transport. Journal of the Air & Waste Management Association. 62(9):1102-1114. https://doi.org/10.1080/10962247.2012.699014 |
2012 | Gao, Y., Zhang, M.-G., Liu, X.-H., & Zhao, C. ;(2012). Model Analysis of the Anthropogenic Aerosol Effect on Clouds over East Asia. Atmospheric and Oceanic Science Letters. 5 (1): 41281 |
2012 | Gong, S.L., D. Lavoue, T.L. Zhao, P. Huang, and J.W. Kaminski. 2012. GEM-AQ/EC, an on-line global multiscale chemical weather modelling system: model development and evaluations of global aerosol climatology. Atmospheric Chemistry and Physics Discussions. 12(4):9283-9330. https://doi.org/10.5194/acpd-12-9283-2012 |
2012 | Hollaway, M.J., S.R. Arnold, A.J. Challinor, and L.D. Emberson. 2012. Intercontinental trans-boundary contributions to ozone-induced crop yield losses in the Northern Hemisphere. Biogeosciences. 9(1):271-292. https://doi.org/10.5194/bg-9-271-2012 |
2012 | Hudiburg, T. W.; (2012). Analysis of the regional carbon balance of Pacific Northwest forests under changing climate, disturbance, and management for bioenergy. Forestry Science, Oregon State University, Corvalis. https://doi.org/10.5194/bg-9-271-2012 |
2012 | Hudman, R.C., N.E. Moore, A.K. Mebust, R.V. Martin, A.R. Russell, L.C. Valin, and R.C. Cohen. 2012. Steps towards a mechanistic model of global soil nitric oxide emissions: implementation and space based-constraints. Atmospheric Chemistry and Physics. 12(16):7779-7795. https://doi.org/10.5194/acp-12-7779-2012 |
2012 | ICP-Vegetation. (2012). Ozone Pollution: Impacts on carbon sequestration in Europe (No. None). Bangor, UK: Centre for Ecology & Hydrology, Environment Centre Wales. |
2012 | Kawamura, K., Y. Izawa, M. Mochida, and T. Shiraiwa. 2012. Ice core records of biomass burning tracers (levoglucosan and dehydroabietic, vanillic and p-hydroxybenzoic acids) and total organic carbon for past 300years in the Kamchatka Peninsula, Northeast Asia. Geochimica et Cosmochimica Acta. 99:317-329. https://doi.org/10.1016/j.gca.2012.08.006 |
2012 | Klonecki, A., M. Pommier, C. Clerbaux, G. Ancellet, J.P. Cammas, P.F. Coheur, A. Cozic, G.S. Diskin, J. Hadji-Lazaro, D.A. Hauglustaine, D. Hurtmans, B. Khattatov, J.F. Lamarque, K.S. Law, P. Nedelec, J.D. Paris, J.R. Podolske, P. Prunet, H. Schlager, S. Szopa, and S. Turquety. 2012. Assimilation of IASI satellite CO fields into a global chemistry transport model for validation against aircraft measurements. Atmospheric Chemistry and Physics. 12(10):4493-4512. https://doi.org/10.5194/acp-12-4493-2012 |
2012 | Liu, Z.; (2012). Characterizing the photochemical environment over china. Earth and Atmospheric Sciences, Georgia Institute of Technology. https://doi.org/10.5194/acp-12-4493-2012 |
2012 | Lund, M.T. and T. Berntsen. 2012. Parameterization of black carbon aging in the OsloCTM2 and implications for regional transport to the Arctic. Atmospheric Chemistry and Physics. 12(15):6999-7014. https://doi.org/10.5194/acp-12-6999-2012 |
2012 | Ma, X., F. Yu, and G. Luo. 2012. Aerosol direct radiative forcing based on GEOS-Chem-APM and uncertainties. Atmospheric Chemistry and Physics Discussions. 12(1):193-240. https://doi.org/10.5194/acpd-12-193-2012 |
2012 | Messerschmidt, J., N. Parazoo, N.M. Deutscher, C. Roehl, T. Warneke, P.O. Wennberg, and D. Wunch. 2012. Evaluation of atmosphere-biosphere exchange estimations with TCCON measurements. Atmospheric Chemistry and Physics Discussions. 12(5):12759-12800. https://doi.org/10.5194/acpd-12-12759-2012 |
2012 | Paulot, F., D.K. Henze, and P.O. Wennberg. 2012. Impact of the isoprene photochemical cascade on tropical ozone. Atmospheric Chemistry and Physics. 12(3):1307-1325. https://doi.org/10.5194/acp-12-1307-2012 |
2012 | Read, K.A., L.J. Carpenter, S.R. Arnold, R. Beale, P.D. Nightingale, J.R. Hopkins, A.C. Lewis, J.D. Lee, L. Mendes, and S.J. Pickering. 2012. Multiannual Observations of Acetone, Methanol, and Acetaldehyde in Remote Tropical Atlantic Air: Implications for Atmospheric OVOC Budgets and Oxidative Capacity. Environmental Science & Technology. 46(20):11028-11039. https://doi.org/10.1021/es302082p |
2012 | Richards, N.A.D., S.R. Arnold, M.P. Chipperfield, G. Miles, A. Rap, R. Siddans, S.A. Monks, and M.J. Hollaway. 2012. Source attribution and radiative impacts of the Mediterranean summertime ozone maximum: a satellite and model perspective. Atmospheric Chemistry and Physics Discussions. 12(10):27219-27254. https://doi.org/10.5194/acpd-12-27219-2012 |
2012 | Simpson, I.J., M.P. Sulbaek Andersen, S. Meinardi, L. Bruhwiler, N.J. Blake, D. Helmig, F.S. Rowland, and D.R. Blake. 2012. Long-term decline of global atmospheric ethane concentrations and implications for methane. Nature. 488(7412):490-494. https://doi.org/10.1038/nature11342 |
2012 | Tai, A.P.K., L.J. Mickley, D.J. Jacob, E.M. Leibensperger, L. Zhang, J.A. Fisher, and H.O.T. Pye. 2012. Meteorological modes of variability for fine particulate matter (PM<sub>2.5</sub>) air quality in the United States: implications for PM<sub>2.5</sub> sensitivity to climate change. Atmospheric Chemistry and Physics. 12(6):3131-3145. https://doi.org/10.5194/acp-12-3131-2012 |
2012 | Tangborn, A., L.L. Strow, B. Imbiriba, L. Ott, and S. Pawson. 2012. Evaluation of a new middle-lower tropospheric CO2 product using data assimilation. Atmospheric Chemistry and Physics Discussions. 12(10):26685-26717. https://doi.org/10.5194/acpd-12-26685-2012 |
2012 | Ten Hoeve, J.E., M.Z. Jacobson, and L.A. Remer. 2012. Comparing results from a physical model with satellite and in situ observations to determine whether biomass burning aerosols over the Amazon brighten or burn off clouds. Journal of Geophysical Research: Atmospheres. 117(D8):n/a-n/a. https://doi.org/10.1029/2011JD016856 |
2012 | Tsao, C.C., J.E. Campbell, M. Mena-Carrasco, S.N. Spak, G.R. Carmichael, and Y. Chen. 2012. Biofuels That Cause Land-Use Change May Have Much Larger Non-GHG Air Quality Emissions Than Fossil Fuels. Environmental Science & Technology. 46(19):10835-10841. https://doi.org/10.1021/es301851x |
2012 | Waldegren, L. T. (2012). Carbon Credits: Origins, Effectiveness & Future. Environmental and Energy Systems Studies, Lund University, Lund, Sweden. |
2012 | Wen, D., J.C. Lin, L. Zhang, R. Vet, and M.D. Moran. 2012. Modeling atmospheric ammonia and ammonium using a backward-in-time stochastic Lagrangian air quality model (STILT-Chem v0.7). Geoscientific Model Development Discussions. 5(3):2745-2788. https://doi.org/10.5194/gmdd-5-2745-2012 |
2012 | Williams, J.E., A. Strunk, V. Huijnen, and M. van Weele. 2012. The application of the Modified Band Approach for the calculation of on-line photodissociation rate constants in TM5: implications for oxidative capacity. Geoscientific Model Development. 5(1):15-35. https://doi.org/10.5194/gmd-5-15-2012 |
2012 | Zhang, Y., H. Liu, J.H. Crawford, D.B. Considine, C. Chan, S.J. Oltmans, and V. Thouret. 2012. Distribution, variability and sources of tropospheric ozone over south China in spring: Intensive ozonesonde measurements at five locations and modeling analysis. Journal of Geophysical Research: Atmospheres. 117(D12):n/a-n/a. https://doi.org/10.1029/2012JD017498 |
2012 | Zhang, Y., P. Karamchandani, T. Glotfelty, D.G. Streets, G. Grell, A. Nenes, F. Yu, and R. Bennartz. 2012. Development and initial application of the global-through-urban weather research and forecasting model with chemistry (GU-WRF/Chem). Journal of Geophysical Research: Atmospheres. 117(D20): https://doi.org/10.1029/2012JD017966 |
2012 | Zyryanov, D., G. Foret, M. Eremenko, M. Beekmann, J.P. Cammas, M. D'Isidoro, H. Elbern, J. Flemming, E. Friese, I. Kioutsioutkis, A. Maurizi, D. Melas, F. Meleux, L. Menut, P. Moinat, V.H. Peuch, A. Poupkou, M. Razinger, M. Schultz, O. Stein, A.M. Suttie, A. Valdebenito, C. Zerefos, G. Dufour, G. Bergametti, and J.M. Flaud. 2012. 3-D evaluation of tropospheric ozone simulations by an ensemble of regional Chemistry Transport Model. Atmospheric Chemistry and Physics. 12(7):3219-3240. https://doi.org/10.5194/acp-12-3219-2012 |
2012 | de Laat, A.T.J., R. Dijkstra, H. Schrijver, P. Nedelec, and I. Aben. 2012. Validation of six years of SCIAMACHY carbon monoxide observations using MOZAIC CO profile measurements. Atmospheric Measurement Techniques. 5(9):2133-2142. https://doi.org/10.5194/amt-5-2133-2012 |
2011 | Allen, M.R.; (2011). The Effects of Varying Physical Parameterizations and Initial Conditions on Tracer Transport in the National Aeronautics and Space Administration Goddard Earth Observation System Model, Version 5. M.S.. Environmental Engineering. https://doi.org/10.5194/amt-5-2133-2012 |
2011 | Deng, F. and J.M. Chen. 2011. Recent global CO2 flux inferred from atmospheric CO2 observations and its regional analyses. Biogeosciences Discussions. 8(2):3497-3536. https://doi.org/10.5194/bgd-8-3497-2011 |
2011 | Deng, F.; (2011). Global CO2 Flux Inferred From Atmospheric Observations and Its Response to Climate Variabilities. Geography. Ph.D. https://doi.org/10.5194/bgd-8-3497-2011 |
2011 | Gao, Y., X. Liu, C. Zhao, and M. Zhang. 2011. Emission controls versus meteorological conditions in determining aerosol concentrations in Beijing during the 2008 Olympic Games. Atmospheric Chemistry and Physics. 11(23):12437-12451. https://doi.org/10.5194/acp-11-12437-2011 |
2011 | Hayes, D.J., A.D. McGuire, D.W. Kicklighter, K.R. Gurney, T.J. Burnside, and J.M. Melillo. 2011. Is the northern high-latitude land-based CO2sink weakening?. Global Biogeochemical Cycles. 25(3):n/a-n/a. https://doi.org/10.1029/2010GB003813 |
2011 | Huang, L., R. Fu, J.H. Jiang, J.S. Wright, and M. Luo. 2011. Geographic and seasonal distributions of CO transport pathways and their roles in determining CO centers in the upper troposphere. Atmospheric Chemistry and Physics Discussions. 11(12):32423-32453. https://doi.org/10.5194/acpd-11-32423-2011 |
2011 | Jin, J.J., N.J. Livesey, J.H. Jiang, A. Lupu, J.W. Kaminski, and J.C. McConnell. 2011. Seasonal variation of trans-Pacific transport of carbon monoxide (CO) in the upper troposphere: MLS observations and GEOS-Chem and GEM-AQ simulations. Atmospheric Chemistry and Physics Discussions. 11(1):3219-3250. https://doi.org/10.5194/acpd-11-3219-2011 |
2011 | Katherine D. Corbin and Rachel M. Law; (2011) Extending atmospheric CO2 and tracer capabilities in ACCESS. The Centre for Australian Weather and Climate Research. CAWCR Technical Report No. 035 https://doi.org/10.5194/acpd-11-3219-2011 |
2011 | Prinn, R.G., Heimbach, P., Rigby, M., Dutkiewicz, S., Melillo, J.M., Reilly, J.M., Kicklighter, D.W., Waugh, C., Global Change Science Policy, (2011). A Strategy for a Global Observing System for Verification of National Greenhouse Gas Emissions. (200), https://doi.org/10.5194/acpd-11-3219-2011 |
2011 | Utembe, S.R., M.C. Cooke, A.T. Archibald, D.E. Shallcross, R.G. Derwent, and M.E. Jenkin. 2011. Simulating secondary organic aerosol in a 3-D Lagrangian chemistry transport model using the reduced Common Representative Intermediates mechanism (CRI v2-R5). Atmospheric Environment. 45(8):1604-1614. https://doi.org/10.1016/j.atmosenv.2010.11.046 |
2011 | Viegas, L., Stevenson, D.; (2011). Wildfires and Climatic Variability in African Woodlands. The 5th International Wildland Fire Conference. https://doi.org/10.1016/j.atmosenv.2010.11.046 |
2011 | Voulgarakis, A., P.J. Telford, A.M. Aghedo, P. Braesicke, G. Faluvegi, N.L. Abraham, K.W. Bowman, J.A. Pyle, and D.T. Shindell. 2011. Global multi-year O3-CO correlation patterns from models and TES satellite observations. Atmospheric Chemistry and Physics. 11(12):5819-5838. https://doi.org/10.5194/acp-11-5819-2011 |
2011 | Zhao, C., X. Liu, L. Ruby Leung, and S. Hagos. 2011. Radiative impact of mineral dust on monsoon precipitation variability over West Africa. Atmospheric Chemistry and Physics. 11(5):1879-1893. https://doi.org/10.5194/acp-11-1879-2011 |
2010 | Aulinger, A., V. Matthias, and M. Quante. 2010. An Approach to Temporally Disaggregate Benzo(a)pyrene Emissions and Their Application to a 3D Eulerian Atmospheric Chemistry Transport Model. Water, Air, & Soil Pollution. 216(1-4):643-655. https://doi.org/10.1007/s11270-010-0559-x |
2010 | Chevallier, F., P. Ciais, T.J. Conway, T. Aalto, B.E. Anderson, P. Bousquet, E.G. Brunke, L. Ciattaglia, Y. Esaki, M. Frohlich, A. Gomez, A.J. Gomez-Pelaez, L. Haszpra, P.B. Krummel, R.L. Langenfelds, M. Leuenberger, T. Machida, F. Maignan, H. Matsueda, J.A. Morgui, H. Mukai, T. Nakazawa, P. Peylin, M. Ramonet, L. Rivier, Y. Sawa, M. Schmidt, L.P. Steele, S.A. Vay, A.T. Vermeulen, S. Wofsy, and D. Worthy. 2010. CO2surface fluxes at grid point scale estimated from a global 21 year reanalysis of atmospheric measurements. Journal of Geophysical Research. 115(D21): https://doi.org/10.1029/2010JD013887 |
2010 | Gerber, S., L.O. Hedin, M. Oppenheimer, S.W. Pacala, and E. Shevliakova. 2010. Nitrogen cycling and feedbacks in a global dynamic land model. Global Biogeochemical Cycles. 24(1):n/a-n/a. https://doi.org/10.1029/2008gb003336 |
2010 | Hayes, D.J., A.D. McGuire, D.W. Kicklighter, T.J. Burnside, and J.M. Melillo. 2010. The Effects of Land Cover and Land Use Change on the Contemporary Carbon Balance of the Arctic and Boreal Terrestrial Ecosystems of Northern Eurasia. 109-136. https://doi.org/10.1007/978-90-481-9118-5_6 |
2010 | Jockel, P., A. Kerkweg, A. Pozzer, R. Sander, H. Tost, H. Riede, A. Baumgaertner, S. Gromov, and B. Kern. 2010. Development cycle 2 of the Modular Earth Submodel System (MESSy2). Geoscientific Model Development. 3(2):717-752. https://doi.org/10.5194/gmd-3-717-2010 |
2010 | Pfeffer, M.A., B. Langmann, A. Heil, and H.F. Graf. 2010. Numerical simulations examining the possible role of anthropogenic and volcanic emissions during the 1997 Indonesian fires. Air Quality, Atmosphere & Health. 5(3):277-292. https://doi.org/10.1007/s11869-010-0105-4 |
2010 | Schuck, T.J., C.A.M. Brenninkmeijer, A.K. Baker, F. Slemr, P.F.J.v. Velthoven, and A. Zahn. 2010. Greenhouse gas relationships in the Indian summer monsoon plume measured by the CARIBIC passenger aircraft. Atmospheric Chemistry and Physics Discussions. 10(2):2031-2087. https://doi.org/10.5194/acpd-10-2031-2010 |
2010 | Zhao, C., X. Liu, L.R. Leung, B. Johnson, S.A. McFarlane, W.I. Gustafson, J.D. Fast, and R. Easter. 2010. The spatial distribution of mineral dust and its shortwave radiative forcing over North Africa: modeling sensitivities to dust emissions and aerosol size treatments. Atmospheric Chemistry and Physics. 10(18):8821-8838. https://doi.org/10.5194/acp-10-8821-2010 |
2010 | Zhao, C., Y. Wang, Q. Yang, R. Fu, D. Cunnold, and Y. Choi. 2010. Impact of East Asian summer monsoon on the air quality over China: View from space. Journal of Geophysical Research. 115(D9): https://doi.org/10.1029/2009JD012745 |
2009 | Flemming, J., A. Inness, H. Flentje, V. Huijnen, P. Moinat, M.G. Schultz, and O. Stein. 2009. Coupling global chemistry transport models to ECMWF's integrated forecast system. Geoscientific Model Development. 2(2):253-265. https://doi.org/10.5194/gmd-2-253-2009 |
2009 | Weber, U., M. Jung, M. Reichstein, C. Beer, M.C. Braakhekke, V. Lehsten, D. Ghent, J. Kaduk, N. Viovy, P. Ciais, N. Gobron, and C. Rodenbeck. 2009. The interannual variability of Africa's ecosystem productivity: a multi-model analysis. Biogeosciences. 6(2):285-295. https://doi.org/10.5194/bg-6-285-2009 |
2009 | Zhang, Q., D.G. Streets, G.R. Carmichael, K.B. He, H. Huo, A. Kannari, Z. Klimont, I.S. Park, S. Reddy, J.S. Fu, D. Chen, L. Duan, Y. Lei, L.T. Wang, and Z.L. Yao. 2009. Asian emissions in 2006 for the NASA INTEX-B mission. Atmospheric Chemistry and Physics. 9(14):5131-5153. https://doi.org/10.5194/acp-9-5131-2009 |
2009 | Zhao, C., Y. Wang, and T. Zeng. 2009. East China Plains: A "Basin" of Ozone Pollution. Environmental Science & Technology. 43(6):1911-1915. https://doi.org/10.1021/es8027764 |
2009 | Zuo, J., J. Huang, J. Wang, W. Zhang, J. Bi, G. Wang, W. Li, and P. Fu. 2009. Surface turbulent flux measurements over the Loess Plateau for a semi-arid climate change study. Advances in Atmospheric Sciences. 26(4):679-691. https://doi.org/10.1007/s00376-009-8188-2 |
2008 | Weber, U., M. Jung, M. Reichstein, C. Beer, M. Braakhekke, V. Lehsten, D. Ghent, J. Kaduk, N. Viovy, P. Ciais, N. Gobron, and C. Rodenbeck. 2008. The inter-annual variability of Africa's ecosystem productivity: a multi-model analysis. Biogeosciences Discussions. 5(5):4035-4069. https://doi.org/10.5194/bgd-5-4035-2008 |
2007 | Aghedo, A.M., M.G. Schultz, and S. Rast. 2007. The influence of African air pollution on regional and global tropospheric ozone. Atmospheric Chemistry and Physics. 7(5):1193-1212. https://doi.org/10.5194/acp-7-1193-2007 |