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EPR Study of Paramagnetic Defects in Clay Minerals Cover

EPR Study of Paramagnetic Defects in Clay Minerals

Open Access
|Nov 2008

References

  1. ADAMSKI, A., SPAŁEK, T., SOJKA, Z., 2003: Application of EPR spectroscopy for elucidation of vanadium speciation in VO\ZrOcatalysts subjected to redox treatment.29, 793-804.
  2. ALLARD TH., MULLER, J.-P., 1998: Kaolinite as in situ dosimeter for past radionuclide migration at the Earth's surface.13, 751-765.
  3. ALLARD Th., MULLER, J.-P., DRAN, J.-C., MENAGER, M.-T., 1994: Radiation induced paramagnetic defects in natural kaolinites: alpha dosimetry with ion beam irradiation.21, 85-96.
  4. ANGEL, B. R., HALL, P. L., 1973: Electron spin resonance studies of kaolins. Proceedings of the International Clay Conference, Madrid, 47-60.
  5. ANGEL, B. R., JONES, J. P. E., HALL, P. L., 1974: Electron spin resonance studies of doped synthetic kaolinite. I.10, 247-255.
  6. BABIŃSKA, J., DYREK, K., SOJKA, Z., WYSZOMIRSKI, P., ŻABIŃSKI, W., 2000: Generation of paramagnetic centers in kaolinites by thermally activated neutrons.31, 2, 2-34.
  7. BAHRANOWSKI, K., SERWICKA, E. M., STOCH, L., STRYCHALSKI, P., 1993: On the possibility of removal of non-structural iron from kaolinite-group minerals.28, 379-391.
  8. BAHRANOWSKI, K., DULA, R., ŁABANOWSKA, M., SERWICKA, E. M, 1996: ESR study of Cu centers supported on Al-, Ti-, and Zr-pillared montmorillonite clays.50, 1439-1445.
  9. CLOZEL, B., ALLARD TH., MULLER, J.-P., 1994: Nature and stability of radiation-induced defects in natural kaolinites: new results and a reappraisal of published works.42, 657-666.
  10. CLOZEL, B., GAITE, J.-M., MULLER, J.-P., 1995: Al-O-Al paramagnetic defects in kaolinite.22, 351-356.
  11. FRIENDLANDER, H. Z., SALDICK, J., FRINK, C. R., 1963: Electron spin resonance studies spectra in various clay minerals.199, 61-62.
  12. GAITE, J. M., ERMAKOFF, P., MULLER, J.-P, 1993: Characterisation and origin of two FeEPR spectra in kaolinite.20, 242-247.
  13. GAITE, J. M., ERMAKOFF, P., ALLARD, T., MULLER, J.-P, 1997: Paramagnetic Fe: a sensitive probe for disorder in kaolinite.45, 4, 496-505.
  14. GÖTZE, J., PLÖTZE, M., FUCHS, H., HABERMANN, D., 1999: Defect structure and luminescence behaviour of agate — results of electron paramagnetic resonance (EPR) and cathodoluminescence (CL) studies.63 2, 149-163
  15. GOURNIS, D., MANTAKA-MARKETOU, A. E., KARAKASSIDES, M. A., PETRIDIS, D., 2001: Ionizing radiation induced defects in smectite clays.28, 4, 285-290.
  16. HERBILLON, A. J., MESTAGH, M. M., VIELVOYE, L., DEROUANE, E. G., 1976: Iron in kaolinite with special reference to kaolinite from tropical soils.11, 201-220.
  17. HOFFMAN, E., 1992: Instrumental neutron activation in geoanalysis.44, 297-319.
  18. IKEYA, M., 1993: New Application of Electron Spin Resonance. Dating, Dosimetry and Microscopy. World Scientific, Singapore.
  19. ILDEFONSE, P., MULLER, J. P., CLOZEL, B., CALAS, G., 1991: Record of past contact between altered rocks and radioactive solutions through radiation-induced defects in kaolinite.. In:212, 749-756
  20. JACKSON, M. L. 1958: Soil Chemical Analysis. Prentice Hall, Englewood Cliffs, New Jersey.
  21. KOMUSIŃSKI, J., STOCH, L., 1984: Dehydroxylation of kaolinite-group minerals: an ESR study.29, 1033-1040.
  22. KOMUSIŃSKI, J., STOCH, L., DUBIEL, S. M., 1981: Application of electron paramagnetic resonance and Mössbauer spectroscopy in the investigation of kaolinite-group minerals.29, 23-30.
  23. MADSEN, F. T., 1998: Clay mineralogical investigations related to nuclear waste disposal.33, 109-129.
  24. MEADS, R. E., MALDEN, P. J., 1975: Electron spin resonance in natural kaolinites containing Feand other transition metal ions.10, 313-343.
  25. MULLER, J. P., CALAS, G., 1989: Tracing kaolinites by their defect centers: kaolinite paragenesis in a laterite (Cameroon).84, 694-707.
  26. MULLER, J. P., CLOZEL, B., ILDEFONSE, P., CALAS, G., 1992: Radiation-induced defects in kaolinites: indirect assessment of radionuclide migration in the geosphere.1, 205-216.
  27. PLÖTZE, M., KAHR, G., HERMANNS STENGELE, R., 2003: Alteration of clay minerals — gamma-irradiation effects on physicochemical properties.23, 195-202.
  28. PUSCH, R., 1992: Use of bentonite for isolation of radioactive waste products.27, 353-361.
  29. PUSHKAREVA, R., KALINICHENKO, E., LYTOVCHENKO, A., PUSHKAREV, A., KADOCHNIKOV, V. M., PLASTYNINA, M., 2002: Irradiation effects on physico-chemical properties of clay minerals.21, 117-123.
  30. SHPAK, A. P., KALINICHENKO, E., LYTOVCHENKO, A., KALINICHENKO, E., LEGKOVA, G. V., BAGMUT, N. N., 2003: The effect of à irradiation on the structure and thermal decomposition of brucite.30, 59-68.
  31. SORIEUL, S., ALLARD TH., BOIZOT, B., CALAS, G., 2002: Beta radiation effects in montmorillonite. XVIII Meeting of the IMA — Edinburgh, Book of Abstracts.
  32. SORIEUL, S., ALLARD TH.,MORIN, G., BOIZOT, B., CALAS, G., 2005: Native and artificial radiation-induced defects in montmorillonite. An EPR study.32, 1-7.
DOI: https://doi.org/10.2478/v10002-007-0021-x | Journal eISSN: 1899-8526 | Journal ISSN: 1899-8291
Language: English
Page range: 125 - 138
Published on: Nov 21, 2008
Published by: Mineralogical Society of Poland
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
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© 2008 Joanna Babińska, Krystyna Dyrek, Piotr Wyszomirski, published by Mineralogical Society of Poland
This work is licensed under the Creative Commons License.