New and improved infrared absorption cross sections for chlorodifluoromethane (HCFC-22)

Author:

Harrison Jeremy J.

Abstract

Abstract. The most widely used hydrochlorofluorocarbon (HCFC) commercially since the 1930s has been chloro-difluoromethane, or HCFC-22, which has the undesirable effect of depleting stratospheric ozone. As this molecule is currently being phased out under the Montreal Protocol, monitoring its concentration profiles using infrared sounders crucially requires accurate laboratory spectroscopic data. This work describes new high-resolution infrared absorption cross sections of chlorodifluoromethane over the spectral range 730–1380 cm−1, determined from spectra recorded using a high-resolution Fourier transform spectrometer (Bruker IFS 125HR) and a 26 cm pathlength cell. Spectra of chlorodifluoromethane/dry synthetic air mixtures were recorded at resolutions between 0.01 and 0.03 cm−1 (calculated as 0.9/MOPD; MOPD denotes the maximum optical path difference) over a range of temperatures and pressures (7.5–762 Torr and 191–295 K) appropriate for atmospheric conditions. This new cross-section dataset improves upon the one currently available in the HITRAN (HIgh-resolution TRANsmission) and GEISA (Gestion et Etude des Informations Spectroscopiques Atmosphériques) databases; in particular it provides coverage over a wider range of pressures and temperatures, has more accurate wavenumber scales, more consistent integrated band intensities, improved signal-to-noise, is free of channel fringing, and additionally covers the ν2 and ν7 bands.

Publisher

Copernicus GmbH

Subject

Atmospheric Science

Reference30 articles.

1. Ballard, J., Knight, R. J., Newnham, D. A., Vander Auwera, J., Herman, M., Di Lonardo, G., Masciarelli, G., Nicolaisen, F. M., Beukes, J. A., Christensen, L. K., Mcpheat, R., Duxbury, G., Freckleton, R., and Shine, K. P.: An intercomparison of laboratory measurements of absorption cross-sections and integrated absorption intensities for HCFC-22, J. Quant. Spectrosc. Ra., 66, 109–128, https://doi.org/10.1016/S0022-4073(99)00211-3, 2000.

2. Brown, A. T., Chipperfield, M. P., Boone, C., Wilson, C., Walker, K. A., and Bernath, P. F.: Trends in atmospheric halogen containing gases since 2004, J. Quant. Spectrosc. Ra., 112, 2552–2566, 2011.

3. Carpenter, L. J., Reimann, S., Burkholder, J .B., Clerbaux, C., Hall, B. D., Hossaini, R., Laube, J. C., and Yvon-Lewis, S. A.: Ozone-Depleting Substances (ODSs) and Other Gases of Interest to the Montreal Protocol, Chapter 1 in Scientific Assessment of Ozone Depletion: 2014, Global Ozone Research and Monitoring Project – Report No. 55, World Meteorological Organization, Geneva, Switzerland, 2014.

4. Clerbaux, C., Colin, R., Simon, P. C., and Granier, C.: Infrared cross sections and global warming potentials of 10 alternative hydrohalocarbons, J. Geophys. Res., 98, 10491–10497, 1993.

5. Harris, N. R. P., Wuebbles, D. J., Daniel, J. S., Hu, J., Kuijpers, L. J. M., Law, K. S., Prather, M. J., and Schofield, R.: Scenarios and information for policymakers, Chapter 5 in Scientific Assessment of Ozone Depletion: 2014, Global Ozone Research and Monitoring Project – Report No. 55, World Meteorological Organization, Geneva, Switzerland, 2014.

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