Carbon monoxide (CO)
Algorithm description
FORLI radiative transfer and retrieval code for IASI D. Hurtmans, P.-F. Coheur, C. Wespes, L. Clarisse, O. Scharf, C. Clerbaux, J. Hadji-Lazaro, M. George, S. Turquety J. Quant. Spectrosc. Radiat. Transf., 113, 11, 1391.1408, 2012 Validation Carbon monoxide distributions from the IASI/METOP mission: evaluation with other space-borne remote sensors M. George, C. Clerbaux, D. Hurtmans, S. Turquety, P.-F. Coheur, M. Pommier, J. Hadji-Lazaro, D.P. Edwards, H. Worden, M. Luo, C. Rinsland, and W. McMillanAtmos. Chem. Phys., 9, 8317-8330, 2009 IASI carbon monoxide validation over the Arctic during POLARCAT spring and summer campaigns M. Pommier, K.S. Law, C. Clerbaux, S. Turquety, D. Hurtmans, J. Hadji-Lazaro, P.-F. Coheur, H. Schlager, G. Ancellet, J.-D. Paris, P. Nédélec, G.S. Diskin, J.R. Podolske, J.S. Holloway, and P. BernathAtmos. Chem. Phys., 10, 10655-10678, doi:10.5194/acp-10-10655-2010, 2010 Retrieval of MetOp-A/IASI CO profiles and validation with MOZAIC data E. De Wachter, B. Barret, E. Le Flochmoën, E. Pavelin, M. Matricardi, C. Clerbaux, J. Hadji-Lazaro, M. George, D. Hurtmans, P.-F. Coheur, P. Nedelec, and J. P. CammasAtmos. Meas. Tech., 5, 2843-2857, doi:10.5194/amt-5-2843-2012, 2012 Validation of IASI FORLI carbon monoxide retrievals using FTIR data from NDACC T. Kerzenmacher, B. Dils, N. Kumps, T. Blumenstock, C. Clerbaux, P.-F. Coheur, P. Demoulin, O. García, M. George, D.W.T. Griffith, F. Hase, J. Hadji-Lazaro, D. Hurtmans, N. Jones, E. Mahieu, J. Notholt, C. Paton-Walsh, U. Raffalski, T. Ridder, M. Schneider, C. Servais, and M. De MazièreAtmos. Meas. Tech., 5, 2751-2761, doi:10.5194/amt-5-2751-2012, 2012 An examination of the long-term CO records from MOPITT and IASI: comparison of retrieval methodology M. George, C. Clerbaux, I. Bouarar, P.-F. Coheur, M.N. Deeter, D.P. Edwards, G. Francis, J.C. Gille, J. Hadji-Lazaro, D. Hurtmans, A. Inness, D. Mao, and H.M. Worden Atmos. Meas. Tech., 8, 4313-4328, doi:10.5194/amt-8-4313-2015, 2015. Other Assimilation of IASI satellite CO fields into a global chemistry transport model for validation against aircraft measurements A. Klonecki, 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. TurquetyAtmos. Chem. Phys., 12, 4493-4512, doi:10.5194/acp-12-4493-2012, 2012 Carbon monoxide urban emission monitoring: A ground-based FTIR case study Y. Té, E. Dieudonné, P. Jeseck, F. Hase, J. Hadji-Lazaro, C. Clerbaux, F. Ravetta, S. Payan, I. Pépin, D. Hurtmans, J. Pelon, and C. Camy-PeyretJ. Atmos. Oceanic Technol., 29, 7, 911-921, doi: 10.1175/JTECH-D-11-00040.1, 2012 Decadal record of satellite carbon monoxide observations H.M. Worden, M.N. Deeter, C. Frankenberg, M. George, F. Nichitiu, J. Worden, I. Aben, K.W. Bowman, C. Clerbaux, P.-F. Coheur, A.T.J. de Laat, R. Detweiler, J.R. Drummond, D.P. Edwards, J.C. Gille, D. Hurtmans, M. Luo, S. Martínez-Alonso, S. Massie, G. Pfister, and J.X. WarnerAtmos. Chem. Phys., 13, 837-850, doi:10.5194/acp-13-837-2013, 2013 IASI's sensitivity to near-surface carbon monoxide (CO): Theoretical analyses and retrievals on test cases S. Bauduin, L. Clarisse, M. Theunissen, M. George, D. Hurtmans, C. Clerbaux, P.-F. Coheur J. Quant. Spectrosc. Radiat. Transf., 189, 428-440, 10.1016/j.jqsrt.2016.12.022, 2017 |