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An investigation of sulfate production in clouds using a flow-through chemical reactor model approachA flow-through chemical reactor model is developed to describe the mass transfer and chemical processes that atmospheric gases undergo in clouds. The model includes the simultaneous absorption of SO2, NH3, O3, NO(x), HNO3, CO2 and H2O2, the accompanying dissociation and oxidation reactions in cloud water, considers electrical neutrality, and includes qualitative parameterization of cloud microphysics. The model is used to assess the importance of the oxidation reactions H2O2-S(IV), O3-S(IV), and S(IV)-Mn(2+) catalysis, and the effects of cloud parameters such as drop size, rain intensity, liquid water content, and updraft velocity. Both precipitating and nonprecipitating clouds are studied. Model results predict sulfate production rates varying from 3 percent/hr to 230 percent/hr. The actual rate is highly dependent on the chemical composition of the uptake air and the physical conditions of the cloud. Model results also show that both the H2O2 and the O3 oxidation reactions can be significant.
Document ID
19840034997
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Hong, M. S.
(Iowa Univ. Iowa City, IA, United States)
Carmichael, G. R.
(Iowa, University Iowa City, IA, United States)
Date Acquired
August 12, 2013
Publication Date
December 20, 1983
Publication Information
Publication: Journal of Geophysical Research
Volume: 88
ISSN: 0148-0227
Subject Category
Geophysics
Accession Number
84A17784
Funding Number(s)
CONTRACT_GRANT: NAG1-36
Distribution Limits
Public
Copyright
Other

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