Extended thermodynamic model for high salinity produced waters | AIChE

Extended thermodynamic model for high salinity produced waters

TitleExtended thermodynamic model for high salinity produced waters
Publication TypeJournal Article
Year of Publication2021
AuthorsTanveer, S, Chen, CChyun
JournalChemical Engineering Science
Volume243
Pagination116754
ISSN0009-2509
Keywords2.7, Aqueous electrolytes, Electrolyte nonrandom two-liquid model, High salinity produced water, Salt solubility, Thermodynamic properties
Abstract

To support the development of desalination processes for high salinity produced waters, we developed a comprehensive thermodynamic model that reliably predicts the thermodynamic properties and phase behavior of produced water. This study extends a previously developed thermodynamic model for the aqueous hexary oceanic salt system by incorporating the Sr2+ and Ba2+ ions. Based on the electrolyte nonrandom two-liquid theory, the model requires two adjustable binary interaction parameters for each water-electrolyte and electrolyte-electrolyte pair that has a common ion. The binary interaction parameters for the electrolyte-electrolyte pairs involving Sr2+ and Ba2+ ions were identified using thermodynamic and salt solubility data. The model was validated for temperatures from 273.15 K to 473.15 K and electrolyte concentrations from infinite dilution to salt saturation. Extension of the model to include HCO3−, CO32−, and CO2 is currently in progress.

URLhttps://scholars.ttu.edu/en/publications/extended-thermodynamic-model-for-high-salinity-produced-waters
DOI10.1016/J.CES.2021.116754