Package FLUIDS. Part 4: thermodynamic modelling and purely empirical equations for H2O-NaCl-KCl solutions
Package FLUIDS. Part 4: thermodynamic modelling and purely empirical equations for H2O-NaCl-KCl solutions
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DOI:
10.1007/s00710-012-0192-z
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发表时间:
2012-02
影响因子:
1.8
通讯作者:
R. Bakker
中科院分区:
文献类型:
--
作者:
R. Bakker
A H2O-NaCl-KCl-rich fluid occurs occasionally in fluid inclusions in a variety of geological environments. The properties of this fluid provide information about the conditions of entrapment, and thereby, conditions that have affected the rock. New purely empirical and thermodynamic models are developed in this study to reproduce the properties of the H2O-NaCl-KCl fluid system, especially theliquidusat variable pressures (the solid–liquid-vapour surface, i.e.SLV), and at constant pressures (the solid–liquid surface, i.e.SL). TheSLVsurface is modelled according to “best-fit” polynomial equations, which relate temperature, pressure and composition. TheSLsurfaces, at constants pressures, are modelled according to thermodynamic principles, i.e. the equality of chemical potentials of components (NaCl and KCl) in each phase at equilibrium. The models are valid up to 400 MPa and 900°C and can be applied to fluid inclusions studies to obtain salinities from dissolution temperatures of salt crystals. The new models are included in the programAqSo WHSthat forms part of the software packageFLUIDS(Bakker, Chem Geol 194:3–23, 2003), to be able to apply directly the mathematical functions in fluid inclusion studies and in general fluid properties investigations.