Montmorillonite/Illite Stability Diagrams
- 1 June 1984
- journal article
- Published by Cambridge University Press (CUP) in Clays and Clay Minerals
- Vol. 32 (3) , 161-166
- https://doi.org/10.1346/ccmn.1984.0320301
Abstract
Chemical activity diagrarns, prepared to illustrate the properties expected if mixed-layer mont-morillonite/illite is regarded as a solid solution, are compared to those derived from a treatment of these materials as a mixture of two phases. If the system is a solid solution, the coexisting aqueous solution should range from higher dissolved silica contents in the presence of kaolinite and a montmorillonite end member to lower dissolved silica in the presence of kaolinite and an illitic end member. Silica concentration in the aqueous solution might vary by a factor of as much as six. If the system is two phase, the silica content of a solution in equilibrium with kaolinite and both phases would be fixed at a given T and P, as would a solution equilibrated with both phases and K-feldspar. In the absence of a third phase, silica in equilibrium with both phases should be nearly constant, but increase with increasing ratio of K+/H+ in solution. Available data on coexisting aqueous solutions apparently are more nearly consistent with two phases than with a solid solution.Keywords
This publication has 5 references indexed in Scilit:
- Activity/Composition Relations among Silicates and Aqueous Solutions: II. Chemical and Thermodynamic Consequences of Ideal Mixing of Atoms on Homological Sites in Montmorillonites, Illites, and Mixed-Layer ClaysClays and Clay Minerals, 1983
- An ideal solid solution model for calculating solubility of clay mineralsClay Minerals, 1981
- Mechanism of burial metamorphism of argillaceous sediment: 1. Mineralogical and chemical evidenceGSA Bulletin, 1976
- Burial Diagenesis in Gulf Coast Pelitic SedimentsClays and Clay Minerals, 1970
- Problem of the thermodynamic status of the mixed-layer mineralsGeochimica et Cosmochimica Acta, 1962