Comparisons between SCIAMACHY and ground-based FTIR
نویسندگان
چکیده
Comparisons between SCIAMACHY and ground-based FTIR data for total columns of CO, CH4, CO2 and N2O B. Dils, M. De Mazière, T. Blumenstock, M. Buchwitz, R. de Beek, P. Demoulin, P. Duchatelet, H. Fast, C. Frankenberg, A. Gloudemans, D. Griffith, N. Jones, T. Kerzenmacher, I. Kramer, E. Mahieu, J. Mellqvist, R. L. Mittermeier, J. Notholt, C. P. Rinsland, H. Schrijver, D. Smale, A. Strandberg, A. G. Straume, W. Stremme, K. Strong, R. Sussmann, J. Taylor, M. van den Broek, T. Wagner, T. Warneke, A. Wiacek, and S. Wood Belgian Institute for Space Aeronomy, Brussels, Belgium Forschungszentrum Karlsruhe, IMK-ASF, Karlsruhe, Germany Meteorological Service of Canada (MSC), Downsview, Ontario, Canada University of Wollongong, New South Wales, Australia Institut d’Astrophysique et de Géophysique, Liège, Belgium Chalmers University of Technology, Radio & Space Science, Göteborg, Sweden Institute of Environmental Physics, University of Heidelberg, Heidelberg, Germany National Institute for Water and Air Research (NIWA), New-Zealand
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Comparisons between SCIAMACHY atmospheric CO2 retrieved using (FSI) WFM-DOAS to ground based FTIR data and the TM3 chemistry transport model
Atmospheric CO2 concentrations, retrieved from spectral measurements made in the near infrared (NIR) by the SCIAMACHY instrument, using Full Spectral Initiation Weighting Function Modified Differential Optical Absorption Spectroscopy (FSI WFM-DOAS), are compared to ground based Fourier Transform Infrared (FTIR) data and to the output from a global chemistry-transport model. Analysis of the FSI ...
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