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- W2044797816 abstract "Annals of the New York Academy of SciencesVolume 338, Issue 1 p. 174-189 MODELING OF AEROSOL DYNAMICS: AEROSOL SIZE AND COMPOSITION* Richard A. Beyak, Richard A. Beyak Department of Chemical Engineering University of Arizona Tucson, Arizona 85721Search for more papers by this authorThomas W. Peterson, Corresponding Author Thomas W. Peterson Department of Chemical Engineering University of Arizona Tucson, Arizona 85721†To whom correspondence should be addressed.Search for more papers by this author Richard A. Beyak, Richard A. Beyak Department of Chemical Engineering University of Arizona Tucson, Arizona 85721Search for more papers by this authorThomas W. Peterson, Corresponding Author Thomas W. Peterson Department of Chemical Engineering University of Arizona Tucson, Arizona 85721†To whom correspondence should be addressed.Search for more papers by this author First published: May 1980 https://doi.org/10.1111/j.1749-6632.1980.tb17119.xCitations: 3 * This work was supported by National Science Foundation Grant ENG 78–05414. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat REFERENCES 1 Peterson, T. W. & J. H. Seinfeld. 1977. Mathematical model for transport, interconversion and removal of gaseous and particulate air pollutants—application to the urban plume. Atmos. Environ. 11: 1171. 2 Peterson, T. W. & J. H. Seinfeld. 1979. Aerosol dynamics in an urban atmosphere. Adv. Environ. Sci. and Technol. J. N. Pitts, Ed.: 10. 3 Fuchs, N. A. 1959. Evaporation and Droplet Growth in Gaseous Media. Pergamon Press, Inc. Oxford , England . 4 Brock, J. R. 1966. Diffusion to particles in the near free molecule region. J. Colloid Interface Sci. 22: 513. 5 Sampson, R. E. & G. S. Springer. 1969. Condensation on and evaporation from droplets by a moment method. J. Fluid Mech. 36(3): 577. 6 Shankar, P. N. 1970. A kinetic theory of steady condensation. J. Fluid Mech. 40(2): 385. 7 Sahni, D. C. 1966. The effect of a black sphere on the flux distribution in an infinite moderator. J. Nucl. Energy Parts A/B 20: 915. 8 Zdanovskii, A. B. 1936. Tr. Solyanoi Lab. Vses. Inst. Galurgii Akad. Nauk SSSR 6. 9 Stokes, R. H. & R. A. Robinson. 1966. Interactions in aqueous nonelectrolyte solutions. I. Solute solvent equilibria. J. Phys. Chem. 70(7): 2126. 10 Larson, T. V., N. R. Horike & H. Harrison. 1978. Oxidation of sulfur dioxide by oxygen and ozone in aqueous solution: A kinetic study with significance to atmospheric rate processes. Atmos. Environ. 12: 1597. 11 Peterson, T. W. & J. H. Seinfeld. 1979. Calculation of sulfate and nitrate levels in a growing, reacting aerosol. Am. Inst. Chem. Eng. J. 25(5): 831. 12 Stelson, A. W., S. K. Friedlander & J. H. Seinfeld. 1979. A note on the equilibrium relationship between ammonia and nitric acid and particulate ammonium nitrate. Atmos. Environ. 13: 369. 13 Freiberg, J. 1975. The mechanism of iron catalyzed oxidation of SO2 in Oxygenated solutions. Atmos. Environ. 9: 661. Citing Literature Volume338, Issue1Aerosols: Anthropogenic and Natural, Sources and TransportMay 1980Pages 174-189 ReferencesRelatedInformation" @default.
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