A computationally efficient inorganic atmospheric aerosol phase equilibrium model (UHAERO)
Preprint
- 28 September 2005
- preprint
- Published by Copernicus GmbH in EGUsphere
- Vol. 6 (4) , 975-992
- https://doi.org/10.5194/acpd-5-9291-2005
Abstract
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. To achieve computational efficiency a number of the models rely on a priori specification of the phases present in certain relative humidity regimes. Presented here is a new computational model, named UHAERO, that is both efficient and rigorously computes phase behavior without any a priori specification. The computational implementation is based on minimization of the Gibbs free energy using a primal-dual method, coupled to a Newton iteration. The mathematical details of the solution are given elsewhere. The model also computes deliquescence and crystallization behavior without any a priori specification of the relative humidities of deliquescence or crystallization. Detailed phase diagrams of the sulfate/nitrate/ammonium/water system are presented as a function of relative humidity at 298.15 K over the complete space of composition.Keywords
All Related Versions
- Published version: Atmospheric Chemistry and Physics, 6 (4), 975.
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