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Thermal evolution and thermochemistry of the cancrinite-group carbonate-oxalate mineral

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References

  1. L. P. Ogorodova, L. V. Melchakova, M. F. Vigasina, et al., “Cancrinite and Cancrisilite in the Khibina-Lovozero Alkaline Complex: Thermochemical and Thermal Data,” Geokhimiya 3, 260–267 (2009) [Geochem. Int. 47, 260–267 (2009)].

    Google Scholar 

  2. E. Bonaccorsi and S. Merlino, “Modular Microporous Minerals: Cancrinite-Davyne and CHS Phases,” Rev. Mineral. Geochem. 57, 448–449 (2005).

    Article  Google Scholar 

  3. N. V. Chukanov, I. V. Pekov, L. V. Olysych, et al., “Kyanoxalite, A New Mineral of Cancrinite Group with Oxalate Out-of-Framework Anion from the Lovozero Alkaline Massif (Kola Peninsula),” Zap. Mineral. O-va 138(6), 18–35.

  4. H. H. Moenke, Mineralspektren. B. 2 (Akad. Verlag, Berlin, 1962).

    Google Scholar 

  5. I. A. Kiseleva, L. P. Ogorodova, N. D. Topor, and O. G. Chigareva, “Thermochemical Study of the CaO-MgO-SiO2 System,” Geokhimiya, No. 12, 1811–1825 (1979).

  6. B. J. Wood and O. J. Kleppa, “Thermochemistry of Forsterite-Fayalite Olivine Solutions,” Geochim. Cosmochim. Acta 45, 529–534 (1981).

    Article  Google Scholar 

  7. R. A. Robie and B. S. Hemingway, “Thermodynamic Properties of Minerals and Related Substances at 298.15 K and 1 Bar (105 Pascals) Pressure and at Higher Temperatures,” U.S. Geol. Surv. Bull, No. 2131, 461 (1995).

  8. I. A. Kiseleva, A. Navrotsky, I. A. Belitsky, and B. A. Fursenko, “Thermochemical Study of Calcium Zeolites-Heulandite and Stilbite,” Am. Mineral 86, 448–455 (2001).

    Google Scholar 

  9. L. P. Ogorodova, L. V. Melchakova, I. A. Kiseleva, and I. A. Belitsky, “Thermochemical Study of Natural Pollucite,” Thermochim. Acta 403, 251–256 (2003).

    Article  Google Scholar 

  10. A. R. Kotel’nikov, Yu. K. Kabalov, T. N. Zezyulya, et al., “Experimental Study of Celestite-Barite Solid Solution,” Geokhimiya, No. 12, 1286–1293 (2000) [Geochem. Int. 38, 1181–1187 (2000)].

  11. I. A. Kiseleva and L. P. Ogorodova, “About Use of High-Temperature Dissolution Calorimetry for the Determination of the Enthalpy of Formation of Hydroxyl-Bearing Minerals by the Example of Talc and Tremolite,” Geokhimiya, No. 12, 1745–1755 (1983).

  12. I. A. Kiseleva, A. R. Kotelnikov, K. V. Martynov, et al., “Thermodynamic Properties of Strontianite-Witherite Solid Solution (Sr,Ba)CO3,” Phys. Chem. Minerals 21, 392–400 (1994).

    Article  Google Scholar 

  13. E. G. Lavut and N. V. Chelovskaya, “Design and Testing of a Hybrid of Isoperibol and Phase-Change Calorimeters for Measurements of the Enthalpies of Reactions Requiring Prolonged Heating,” J. Chem Thermodyn. 27 (1995).

  14. G. B. Naumov, B. N. Ryzhenko, and I. L. Khodakovskii, Reference Book on Thermodynamic Values (for Geologists) (Atomzidat, Moscow, 1971) [in Russian].

    Google Scholar 

  15. G. K. Johnson, I. R. Tasker, H. E. Flotow, et al., “Thermodynamic Studies of Mordenite, Dehydrated Mordenite, and Gibbsite,” Am. Mineral. 77, 85–93 (1992).

    Google Scholar 

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Correspondence to L. P. Ogorodova.

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Original Russian Text © L.V. Olysych, M.F. Vigasina, L.V. Melchakova, L.P. Ogorodova, I.V. Pekov, N.V. Chukanov, 2011, published in Geokhimiya, 2011, Vol. 49, No. 7, pp. 772–778.

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Olysych, L.V., Vigasina, M.F., Melchakova, L.V. et al. Thermal evolution and thermochemistry of the cancrinite-group carbonate-oxalate mineral. Geochem. Int. 49, 731–737 (2011). https://doi.org/10.1134/S0016702911050089

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