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  • 1
    Publication Date: 2011-08-19
    Keywords: ENVIRONMENT POLLUTION
    Type: EPA, Effects of Changes in Stratospheric Ozone and Global Climate. Volume 1: Overview; p 199-218
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  • 2
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    In:  Other Sources
    Publication Date: 2011-08-12
    Description: Radiative transfer by doubling very thin layers in problem of diffuse reflection from plane-parallel atmosphere eliminates numerically solving transfer equation
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: ; ADEMIE DES SCIENCES
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  • 3
    Publication Date: 2011-08-17
    Description: Nitrous oxide, methane, ammonia, and a number of other trace constituents of the earth's atmosphere have infrared absorption bands in the spectral range from 7 to 14 microns. Despite their small amounts, these gases can have a significant effect on the thermal structure of the atmosphere by transmitting most of the thermal radiation from the earth's surface to the lower atmosphere. In the present paper, this greenhouse effect is computed for a number of trace gases. The nature and climatic implications of possible changes in the concentrations of N2O, CH4, NH3, and HNO3 are discussed.
    Keywords: ENVIRONMENT POLLUTION
    Type: Science; 194; Nov. 12
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  • 4
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    In:  CASI
    Publication Date: 2019-06-27
    Description: Doubling principle providing rapid and accurate results for problem of diffuse reflection from plane parallel atmosphere
    Keywords: THERMODYNAMICS AND COMBUSTION
    Type: NASA-TM-X-61296
    Format: application/pdf
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  • 5
    Publication Date: 2019-07-12
    Description: Although long considered to be of marginal importance to global climate change, tropospheric aerosol contributes substantially to radiative forcing, and anthropogenic sulfate aerosol, in particular, has imposed a major perturbation to this forcing. Both the direct scattering of short-wavelength solar radiation and the modification of the shortwave reflective properties of clouds by sulfate aerosol particles increase planetary albedo, thereby exerting a cooling influence on the planet. Current climate forcing due to anthropogenic sulfate is estimated to be -1 to -2 watts per square meter, globally averaged. This perturbation is comparable in magnitude to current anthropogenic greenhouse gas forcing but opposite in sign. Thus, the aerosol forcing has likely offset global greenhouse warming to a substantial degree. However, differences in geographical and seasonal distributions of these forcings preclude any simple compensation. Aerosol effects must be taken into account in evaluating anthropogenic influences on past, current, and projected future climate and in formulating policy regarding controls on emission of greenhouse gases and sulfur dioxide. Resolution of such policy issues requires integrated research on the magnitude and geographical distribution of aerosol climate forcing and on the controlling chemical and physical processes.
    Keywords: ENVIRONMENT POLLUTION
    Type: Science (ISSN 0036-8075); 255; 423-430
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