M. Noppel, BINARY NUCLEATION OF WATER-SULFURIC ACID SYSTEM - A REEXAMINATION OF THE CLASSICAL HYDRATES INTERACTION-MODEL, The Journal of chemical physics, 109(20), 1998, pp. 9052-9056
It is shown that the hydration correction for the free energy of clust
er formation in the classical binary nucleation theory is not applicab
le for the thermodynamic data of the water-surface acid system commonl
y used in nucleation calculations. A new form of the hydration correct
ion is presented. For the commonly used thermodynamic data the nucleat
ion rates of the new hydration correction are in the temperature range
of 248-323 K, and at a relative humidity greater than 40%, 10(3)-10(6
) times lower, respectively, than the nucleation rates of the former t
heory. The predictions of acid-water nucleation rates of the thermodyn
amically consistent version of the classical binary homogeneous theory
[G. J. Wilemski, Chem. Phys. 80, 1370 (1984)] with the new hydration
correction are in accordance with experimental results [B. E. Wyslouzi
l, J. H. Seinfeld, R. C. Flagan, and K. J. Okuyama, Chem. Phys. 94, 68
42 (1991)] obtained at 298 K and with experimental results CD. Boulaud
, G. Madelaine, D. Vigla, and J. Bricard, J. Chem. Phys. 66, 4854 (197
7)] obtained at 293 K, but at a given number concentration of acid and
relative humidity, they predicted nucleation rates are rather more st
ronger functions of temperature than the experimental rates. The theor
etical nucleation rate of water-sulfuric acid vapor is due to the hydr
ation correction sensitive to the thermodynamic properties of dimers a
nd timers. (C) 1998 American Institute of Physics. [S0021-9606(98)5124
4-5].