Skip to main content
Log in

Defects in crystaline structure of chrysotile and their role in development of technological properties of asbestos fiber

  • Physical And Chemical Principles Of Ore Dressing
  • Published:
Journal of Mining Science Aims and scope

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

References

  1. H. Jagodzinski and G. Kunze, "The rolled structure of chrysotile," News jb. Mineral. Mh., 95–108, 113–130, 137–150 (1954).

  2. E. J. W. Whittaker, "Classification of cylindrical lattices," Acta Cryst., No. 8, 571–574 (1955).

  3. K. Yada and K. Iishi, "Growth and microstructure of synthetic chrysotile," Am. Miner., No. 62, 958 (1977).

  4. R. S. Gritsenko, B. B. Zvyagin, R. V. Boyarskaya, et al., Methods of Electron Microscopy of Minerals [in Russian], Moscow (1969), pp. 307.

  5. E. K. Varfolomeeva, G. M. Eskina, G. A. Krinari, et al., "Models of real structure of chrysotile asbestos," in: Physics of Minerals and Rocks [in Russian], Kazan State University, Kazan (1954). pp. 62–67.

    Google Scholar 

  6. E. J. W. Whittaker, "Diffraction of x-rays by a cylindrical lattice, 1–4," Acta Cryst., 827–832 (1954), 261–272 (1955).

  7. G. A. Krinari, N. Yu. Sabirova, and Z. Ya. Khalitov, "Modeling of diffraction profiles on the basis of systems of cylindrical crystals (with reference to chrysotile asbestos)," in: Physics of Minerals and Their Synthetic Analogs [in Russian], Kazan State University, Kazan (1954), pp. 123–134.

    Google Scholar 

  8. G. A. Krinari, N. Yu. Sabirova, and Z. Ya. Khalitov, "Causes of abnormal diffraction maxima of the HOO type in a system of cylindrical crystals and their genetic interpretation for chrysotile asbestos," in: Real Structure and Properties of Minerals [in Russian], Kazan State University, Kazan (1989), pp. 44–50.

    Google Scholar 

  9. "Development of concepts of real structure of chrysotile fibrils by analysis of profiles of HOL reflections," in: Spectroscopy, Crystal Chemistry, and Real Structure of Minerals and Their Analogs [in Russian], Kazan State University, Kazan (1990), pp. 19–29.

  10. F. Plancon, F. Rousseaux, D. Tchoubar, C. Tchoubar, G. Krinari, and V. A. Drits, "Recording and calculation of hk rod intensities in case of diffraction of highly oriented powders of lamellar samples," J. Appl. Cryst., No. 15, Pt. 5, 509–512 (1982).

  11. B. B. Zvyagin and G. A. Krinari, "Geometric features and principles of recording of diffraction patterns of textured objects," Kristall., No. 34, 288–291 (1989).

  12. G. A. Krinari and Z. J. Halitov, "Method of scanning of reciprocal space of axial textures and its application to structural investigation," Proc. Fist EPIDC, Vol. 1, 191–196 (1991).

    Google Scholar 

  13. B. B. Zvyagin, "Crystallochemical characteristics of serpentine minerals," Izv. Akad. Nauk SSSR, Ser. Geol., No. 11, 106–117 (1982).

  14. G. M. Eskina, G. A. Krinari, and Z. Ya. Khalitov, "Real structure and mineralogical classification of chrysotile asbestos," in: Real Structure and Properties of Minerals [in Russian], Kazan (1989), pp. 28–43.

  15. E. J. W. Whittaker, "Structure of chrysotile, 1–2," Acta Cryst., No. 6, 747–748 (1953), No. 9, 855–862 (1956).

  16. A. I. Bakhtin, "Crystallochemical characteristics of normal and brittle chrysotile asbestos," in: Physics of Minerals and Their Synthetic Analogs [in Russian], Kazan State University, Kazan, pp. 18–26.

  17. L. A. Vasil'eva, L. N. Pylev, A. I. Vezentsev, and A. A. Smolikov, "Carcinogenic activity of synthetic chrysotile asbestos having different sizes of fibers and chemical composition," Eksperiment. Onkol., No. 4,11, 26–29 (1989).

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Translated from Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, Vol. 31, No. 4, July–August, 1995.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Krinari, G.A., Khalitov, Z.Y. Defects in crystaline structure of chrysotile and their role in development of technological properties of asbestos fiber. J Min Sci 31, 314–320 (1995). https://doi.org/10.1007/BF02048233

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02048233

Keywords

Navigation