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Inorganic species in geologic fluids: Correlations among standard molal thermodynamic properties of aqueous ions and hydroxide complexes

Geochimica et Cosmochimica Acta · 1997 · Vol. 61(5) · pp. 907–950

Abstract

Correlations among experimentally determined standard partial molal thermodynamic properties of inorganic aqueous species at 25 degrees C and 1 bar allow estimates of these properties for numerous monatomic cations and anions, polyatomic anions, oxyanions, acid oxyanions, neutral oxy-acid species, dissolved gases, and hydroxide complexes of metal cations. Combined with correlations among parameters in the revised Helgeson-Kirkham-Flowers (HKF) equation of state (Shock et al., 1992), these estimates permit predictions of standard partial molal volumes, heat capacities, and entropies, as well as apparent standard partial molal enthalpies and Gibbs free energies of formation to 1000 degrees C and 5 kb for hundreds of inorganic aqueous species of interest in geochemistry. Data and parameters for more than 300 inorganic aqueous species are presented. Close agreement between calculated and experimentally determined equilibrium constants for acid dissociation reactions and cation hydrolysis reactions supports the generality and validity of these predictive methods. These data facilitate the calculation of the speciation of major, minor, and trace elements in hydrothermal and metamorphic fluids throughout most of the crust of the Earth.

Chemical and Physical Properties in Aqueous SolutionsRadioactive element chemistry and processingGroundwater and Isotope GeochemistryMolalityChemistryAqueous solutionHydroxideInorganic chemistryThermodynamicsStandard enthalpy of formationUranylIonPhysical chemistry

MeSH terms

AlgorithmsAnionsAtmospheric PressureCationsElectrolytesGeologyHydroxidesIonsMathematicsMetalsModels, ChemicalOxygenTemperatureThermodynamicsWater
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Journal of Nuclear Materials · 1993 · 946 citations
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Journal of Molecular Structure · 1970 · 3,583 citations
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