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A study of disorder in kaolinite

Published online by Cambridge University Press:  09 July 2018

F. R. Noble*
Affiliation:
English Clays Lovering Pochin & Co. Ltd, St. Austell, Cornwall

Abstract

X-ray powder diffraction patterns of kaolinites have been studied with especial reference to the region of the 02, 11, band. Satisfactory correlations with calculated patterns based on the layer structure of dickite can be achieved for a range of kaolinites if account is taken of disorder between and within layers. Some indication of the amount of disorder within a kaolinite can be obtained.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1971

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References

Brindley, G.W. (1961) The X-Ray identification and Crystal Structures of Clay Minerals (G. Brown editor), Chapter II, p. 51. The Mineralogical Society, London.Google Scholar
Brindley, G.W. & Nakahira, M. (1958) Mineralog. Mag. 31, 781.Google Scholar
Brindley, G.W. & Robinson, K. (1946a) Mineralog. Mag. 27, 242.Google Scholar
Brindley, G.W. & Robinson, K. (1946b) Trans. Faraday Soc. 42B, 198.Google Scholar
Farmer, V.C. (1968) Clay Miner. 7, 373.CrossRefGoogle Scholar
Goodyear, J. & Duffin, W.J. (1961) Mineralog. Mag. 32, 902.Google Scholar
Hinckley, D.N. (1961) Mineralogical and Chemical Variations in the Kaolin Deposits of the Coastal Plain of Georgia and South Carolina. Dept. of Mineralogy, Technical Report, Pennsylvania State Univ.Google Scholar
Hinckley, D.N. (1965) Clays Clay Miner. 13, 229.Google Scholar
James, R.W. (1954) The Optical Principles of the Diffraction of X-Rays, Bell.Google Scholar
Mackenzie, R.C. (1957) The Differential Thermal Investigation of Clays (R. C. Mackenzie, editor) The Mineralogical Society, London.Google Scholar
Mitra, G.B. (1963) Z. Kristallogr. Kristallgeom. 119, 161.Google Scholar
Murray, H.H. (1954) Am. Miner. 39, 97.Google Scholar
Murray, H.H. & Lyons, S.C. (1956) Clays Clay Miner. 4, 13.Google Scholar
Nakahira, M. & Uda, M. (1967)2. Kristallogr. Kristallgeom. 124, 420.Google Scholar
Newnham, R.E. (1956) Ph.D. Thesis, Pennsylvania State University.Google Scholar
Newnham, R.E. (1961) Mineralog. Mag. 32, 683.Google Scholar
Newnham, R.E. & Brindley, G.W. (1956) Acta crystallogr. 9, 759.Google Scholar
Parker, T.W. (1969) Clay Miner. 8, 135.Google Scholar
Robertson, R.H.S., Brindley, G.W. & Mackenzie, R.C. (1954) Am. Miner. 39, 118.Google Scholar
Stokes, A.R. (1948) Proc. phys. Soc. 61, 382.CrossRefGoogle Scholar
Takahashi, H. (1958) Bull. chem. Soc. Japan 31, 275.Google Scholar
Warren, B.E. (1955) Acta crystallogr. 8, 483.CrossRefGoogle Scholar
Zvyagin, B.B. (1967) Electron Diffraction Analysis of Clay Mineral Structures. Plenum Press.Google Scholar