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Pascal, M. L., Roux, J. (1985) K-Na exchange equilibria between muscovite-paragonite solid solution and hydrothermal chloride solutions. Mineralogical Magazine, 49 (353) 515-521 doi:10.1180/minmag.1985.049.353.04

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Reference TypeJournal (article/letter/editorial)
TitleK-Na exchange equilibria between muscovite-paragonite solid solution and hydrothermal chloride solutions
JournalMineralogical MagazineISSN0026-461X
AuthorsPascal, M. L.Author
Roux, J.Author
Year1985 (September)Volume49
Issue353
PublisherMineralogical Society
Download URLhttps://rruff.info/doclib/MinMag/Volume_49/49-353-515.pdf+
DOIdoi:10.1180/minmag.1985.049.353.04Search in ResearchGate
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Mindat Ref. ID3758Long-form Identifiermindat:1:5:3758:1
GUID0
Full ReferencePascal, M. L., Roux, J. (1985) K-Na exchange equilibria between muscovite-paragonite solid solution and hydrothermal chloride solutions. Mineralogical Magazine, 49 (353) 515-521 doi:10.1180/minmag.1985.049.353.04
Plain TextPascal, M. L., Roux, J. (1985) K-Na exchange equilibria between muscovite-paragonite solid solution and hydrothermal chloride solutions. Mineralogical Magazine, 49 (353) 515-521 doi:10.1180/minmag.1985.049.353.04
In(1985, September) Mineralogical Magazine Vol. 49 (353). Mineralogical Society
Abstract/NotesAbstractThree ion exchange equilibrium isotherms between muscovite-paragonite solid solution and 2-molal KCl-NaCl aqueous solutions have been studied at (1) 420°C 1 kbar, (2) 420°C, 2 kbar, and (3) 550°C, 2 kbar. The ΔG°(Joules) ± 2σ of the ion exchange reaction are: ΔG° (1) = −17 259±686, ΔG° (2) = −18 268 ± 560, ΔG° (3) = −16018 ± 336. The excess mixing parameters (‘subregular solution’) of the solid solution (at 1 bar) have been calculated:The corresponding binodal compositions are (muscovite mol fraction): 12–56% at 420 °C, 1 bar and 15–51% at 550 °C 1 bar. The compositions of micas in equilibrium with perthites (high structural state) at 400, 500, 600 °C and 2 kbar are respectively: Xmus = 91, 86, and 82%.The mixing properties of the solution were estimated using the speciation of two molal chloride solutions calculated from the dissociation constants of NaCl and KCl in aqueous solution. Although NaCl appears to be substantially more dissociated than KCl, the resulting excess free energy of mixing of the hydrothermal (Na,K)Cl solution was found less than 500 J at temperatures above 400 °C and pressures up to 2 kbar.The difference in Gibbs free energy of formation (from the elements at 25 °C, 1 bar) between NaCl and KCl in two molal aqueous solutions is proposed:


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