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Structural alteration of sepiolite by dry grinding

Published online by Cambridge University Press:  09 July 2018

J. Cornejo
Affiliation:
Instituto de Recursos Naturales y Agrobiologia de Sevilla, CSIC, Apartado 1052, 41080 Sevilla, Spain
M. C. Hermosin
Affiliation:
Instituto de Recursos Naturales y Agrobiologia de Sevilla, CSIC, Apartado 1052, 41080 Sevilla, Spain

Abstract

The effects of dry grinding on the structure of sepiolite were studied by XRD, surface area measurement, TG-DTA and IR spectroscopy techniques. The results show that the sepiolite framework is rather resistant to mechanical stress and its alteration by dry grinding occurs through three successive, overlapping processes: (i) thinning of the fibrous particles without structural alteration; (ii) distortion of the parallel units of sepiolite fibres, affecting essentially the particle surface which transforms into an amorphous protective coating; (iii) disruption of the inner structure and a prototropy effect, producing an amorphous phase with some residual order.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1988

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References

references

Cicel, B. & Kranz, G. (1981) Mechanism of montmorillonite structure degradation by percussive grinding. Clay Miner. 16, 151–162.Google Scholar
Henmi, T. & Yoshinaga, N. (1981) Alteration of imogolite by dry grinding. Clay Miner. 16, 139–149.Google Scholar
Miller, J.G. & Oulton, T.D. (1970) Prototropy effect in kaolinite during percussive grinding. Clays Clay Miner. 18, 313–323.Google Scholar
Miller, J.G. & Oulton, T.D. (1972) Some effects of grinding kaolinite with potassium bromide. Clays Clay Miner. 20, 389–390.Google Scholar
Mingelgrin, U., Kliger, L., Gal, M. & Saltzman, S. (1978) The effect of grinding on the structure and behaviour of bentonite. Clays Clay Miner. 26, 299–307.Google Scholar
Nagata, H., Shimoda, S. & Sudo, T. (1974) On dehydration of bound water of sepiolite. Clays Clay Miner. 22, 285–293.Google Scholar
Papirer, E. & Roland, P. (1981) Grinding chrysotile in hydrocarbons, alcohol and water. Clays Clay Miner. 29, 161–170.Google Scholar
Serna, C., Ahlrichs, J.L. & Serratosa, J.M. (1975) Folding in sepiolite crystals. Clays Clay Miner. 23,452-457.Google Scholar
Yariv, S. (1975) Infrared study of grinding kaolinite with alkaline metal chlorides. Powder Tech. 12,131-138.Google Scholar