2008 Annual Meeting
(190af) A Properties Model of Hi-I2-H2O Systems
In aqueous solution, HI, H2O and I2 have a number of complexing and ionization reactions. The result is binary and ternary phase behavior where both aqueous binaries show partial immiscibility, but a single liquid phase is found in the ternary. While the pressure is fixed over the LL region, when the single liquid appears with sufficient HI, the pressure first decreases and then increases dramatically over a small range of added HI, with large amounts of HI going to the vapor.
Literature models for this system do not fully capture all of these variations. In particular, the rapid rise in HI partial pressures is not obtained even if the miscibility is described. This paper will describe a new properties model for the HI-I2-H2O system using alternative speciation reactions that are consistent with molecular calculations and spectroscopy. This leads to new parameters for the Electrolyte-NRTL model and more reliable energy estimates for the HI decomposition section.