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THERMAL ANNEALING DERIVATIVES OF TECHNOGENIC GYPSUM BY ELECTRON PARAMAGNETIC RESONANCE

Khasanova, N.M., Khasanov, R.A., Nizamutdinov, N.M., Nurgaliev, D.K.

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b11/s01.082View metrics

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Title
THERMAL ANNEALING DERIVATIVES OF TECHNOGENIC GYPSUM BY ELECTRON PARAMAGNETIC RESONANCE
Authors
Khasanova, N.M., Khasanov, R.A., Nizamutdinov, N.M., Nurgaliev, D.K.
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Science and Technologies in Geology, Exploration and Mining
Publisher
Stef92 Technology
Year
2016
Pages
649-656
ISSN
1314-2704
ISBN
978-619-7105-55-1
Language
en
Publication type
Conference Paper
References18
  1. Schofield P.F., Wilson C.C., Knight K.S., and Stretton I.C., Temperature related structural variation of the hydrous components in gypsum. Zeitschrift für Kristallographie: Vol. 215, Issue 12, pp. 707-710, 2000.

  2. Kon H., Electron spin resonance of atomic hydrogen in calcium sulfate hemihydrates at room temperature, J. Chem. Phys., Vol.41, pp. 573-574, 1964.

  3. Khasanov R. A., Nizamutdinov N. M., Khasanova N. M., Gubaidullin A.T., Vinokurov V.M., Low-Temperature Dehydration of Gypsum Single Crystals , Crystallography Reports, Vol. 53/5, pp. 806– 811, 2008.

  4. Khasanov R. A., Nizamutdinov N. M., Khasanova N. M., Salimov R. I., Kadyrov R. I. and Vinokurov V. M., Phase States of the Gypsum Thermal-Annealing Derivatives According to Electron Spin Resonance Spectra, Crystallography Reports, Vol. 59/3, pp. 399–406, 2014.

  5. Khasanova N.M., Khasanov R.A., Nizamutdinov N.M., Nurgaliev D.K., PECULIARITIES GYPSUM CRYSTALS STRUCTURE BASED ON ELECTRON PARAMAGNETIC RESONANCE RADIATION DEFECTS, International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 2016. Present issue.

  6. Khasanova N.M., Khasanov R.A., Nizamutdinov N.M., Salimov R.I., Izotov V.G., MORPHOLOGY AND RADIATION-INDUCED CENTERS OF TECHNOGENIC GYPSUM, Procedia Earth and Planetary Science ,Vol. 15, pp. 579–584. 2015.

  7. CHRISTENSEN A.N., OLESEN M., CERENIUS Y. AND JENSEN T.J., FORMATION AND TRANSFORMATION OF FIVE DIFFERENT PHASES IN THE CASO4−H2O SYSTEM: CRYSTAL STRUCTURE OF THE SUBHYDRATE Β-CASO4·0.5H2O AND SOLUBLE ANHYDRITE CASO4, CHEM. MATER., VOL.20 /6, PP 2124–2132, 2008.

  8. Robertson K., Bish D., Constraints on the distribution of CaSO4nH2O phases on Mars and implications for their contribution to the hydrological cycle, Icarus, Vol. 223, pp. 407–417, 2013.

  9. Prasad P.S., Pradham A., Gowd T.V. In situ micro-Raman investigation of dehydration mechanism in natural gypsum, Research communications, Vol.80/9, pp.1203-1207, 2001. 16th International Scientific GeoConference SGEM2016 www.sgem.org

  10. Schofield P.F., Wilson C.C., Knight K.S., and Stretton I.C., Temperature related structural variation of the hydrous components in gypsum. Zeitschrift für Kristallographie: Vol. 215, Issue 12, pp. 707-710, 2000.

  11. Kon H., Electron spin resonance of atomic hydrogen in calcium sulfate hemihydrates at room temperature, J. Chem. Phys., Vol.41, pp. 573-574, 1964.

  12. Khasanov R. A., Nizamutdinov N. M., Khasanova N. M., Gubaidullin A.T., Vinokurov V.M., Low-Temperature Dehydration of Gypsum Single Crystals , Crystallography Reports, Vol. 53/5, pp. 806– 811, 2008.

  13. Khasanov R. A., Nizamutdinov N. M., Khasanova N. M., Salimov R. I., Kadyrov R. I. and Vinokurov V. M., Phase States of the Gypsum Thermal-Annealing Derivatives According to Electron Spin Resonance Spectra, Crystallography Reports, Vol. 59/3, pp. 399–406, 2014.

  14. Khasanova N.M., Khasanov R.A., Nizamutdinov N.M., Nurgaliev D.K., PECULIARITIES GYPSUM CRYSTALS STRUCTURE BASED ON ELECTRON PARAMAGNETIC RESONANCE RADIATION DEFECTS, International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 2016. Present issue.

  15. Khasanova N.M., Khasanov R.A., Nizamutdinov N.M., Salimov R.I., Izotov V.G., MORPHOLOGY AND RADIATION-INDUCED CENTERS OF TECHNOGENIC GYPSUM, Procedia Earth and Planetary Science ,Vol. 15, pp. 579–584. 2015.

  16. CHRISTENSEN A.N., OLESEN M., CERENIUS Y. AND JENSEN T.J., FORMATION AND TRANSFORMATION OF FIVE DIFFERENT PHASES IN THE CASO4−H2O SYSTEM: CRYSTAL STRUCTURE OF THE SUBHYDRATE Β-CASO4·0.5H2O AND SOLUBLE ANHYDRITE CASO4, CHEM. MATER., VOL.20 /6, PP 2124–2132, 2008.

  17. Robertson K., Bish D., Constraints on the distribution of CaSO4nH2O phases on Mars and implications for their contribution to the hydrological cycle, Icarus, Vol. 223, pp. 407–417, 2013.

  18. Prasad P.S., Pradham A., Gowd T.V. In situ micro-Raman investigation of dehydration mechanism in natural gypsum, Research communications, Vol.80/9, pp.1203-1207, 2001. 16th International Scientific GeoConference SGEM2016 www.sgem.org

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