Estimating the Density and Compressibility of Natural Hypersaline Brines Using the Pitzer Ionic Interaction Model

Author:

Sharp Jonathan D.,Albehadili Muayad H. M.,Millero Frank J.,Woosley Ryan J.

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics

Reference51 articles.

1. Beyth M (1980) Recent evolution and present stage of Dead Sea brines. In: Nissenbaum A (ed) Hypersaline brines and evaporitic environments. Elsevier, Amsterdam, pp 155–164

2. Brewer PG, Riley JP, Culkin F (1965) The chemical composition of the hot salty water from the bottom of the Red Sea. Deep Sea Res 12:497–503

3. Charykova MV, Kurilenko VV, Charykov NA, Terskaya LP (1995a) Thermodynamic modelling of the process of formation, evolution and industrial exploitation of modern salt basins. Zhur Prikl Khim 68:802–807

4. Charykova MV, Terskaya LP, Puchkov LV, Charykov NA, Kurilenko VV (1995b) The modeling of the processes of open evaporation and crystallization of seawater. Zhur Prikl Khim 68:731–735

5. Connaugton LM, Hershey JP, Millero FJ (1986) The PVT properties of concentrated aqueous electrolytes: V. Densities and apparent molal volumes of the four major sea salts from dilute solution to saturation and from 0 to 100 °C. J Solut Chem 15:989–1002

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