Study of the Atmospheric Degradation, Radiative Forcing and .ppt
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1、Study of the Atmospheric Degradation, Radiative Forcing and Global Warming Potentials of CH2FCH2OH, CHF2CH2OH and CF3CH2OH S. R. Sellevga, G. Myhreb, J. K. Sundetb and C. J. Nielsena a Department of Chemistry, University of Oslo, P.O. Box 1033 Blindern, 0315 Oslo, Norway b Department of Geophysics,
2、University of Oslo, P.O. Box 1022 Blindern, 0315 Oslo, Norway,INTRODUCTION This work is a part of the project “Impact of Alternative Fluorinated Alcohols and Ethers on the Environment (IAFAEE)”, which is a co-operation between Uni-versity of Oslo, University College Dublin, University of Crete and R
3、ussian Academy of Science. We have studied the atmospheric degradation, radiative forcing and global warming potentials (GWP) of CH2FCH2OH, CHF2CH2OH and CF3CH2OH, which have been suggested as new CFC and HCFC replacements. See also posters AP6 and AP12.RESULTS Rate Constants for the Reactions with
4、OH RadicalsFig. 1. Loss of reactant versus reference in the reaction with OH.Table 1. Rate constants for the OH reactions with CH2FCH2OH, CHF2CH2OH, and CF3CH2OH at 298 K.Absorption Cross SectionsFig. 2. Absorption cross sections (base e) of pure vapors of CH2FCH2OH, CHF2CH2OH and CF3CH2OH.,Radiativ
5、e Forcing and Global Warming PotentialsFig. 3. Zonal mean vertical distribution of CF3CH2OH given in ppt. The abundance decrease much faster with altitude than for well mixed greenhouse gases but to a smaller extent than for the two other compounds in this study.Fig. 4. Geographical distribution of
6、radiative forcing due to CF3CH2OH. The glo-bal mean radiative forcing is 0.17 W m-2. Similar to the well mixed greenhouse gases the largest radiative forcing is in tropical regions with small cloud amounts, high surface temperature, and a large temperature difference between the surface and the trop
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