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(1998) The quantification of lateritic bauxite minerals using X-ray powder diffraction by the Rietveld method. Powder Diffraction, 13 (3) 136-143 doi:10.1017/s0885715600009982

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Reference TypeJournal (article/letter/editorial)
TitleThe quantification of lateritic bauxite minerals using X-ray powder diffraction by the Rietveld method
JournalPowder Diffraction
Year1998 (September)Volume13
Page(s)136-143Issue3
PublisherCambridge University Press (CUP)
DOIdoi:10.1017/s0885715600009982Search in ResearchGate
Mindat Ref. ID13253803Long-form Identifiermindat:1:5:13253803:1
GUIDf444b338-ba53-48c2-ae8b-ab64c262f7f4
Full Reference(1998) The quantification of lateritic bauxite minerals using X-ray powder diffraction by the Rietveld method. Powder Diffraction, 13 (3) 136-143 doi:10.1017/s0885715600009982
Plain Text(1998) The quantification of lateritic bauxite minerals using X-ray powder diffraction by the Rietveld method. Powder Diffraction, 13 (3) 136-143 doi:10.1017/s0885715600009982
In(1998, September) Powder Diffraction Vol. 13 (3) Cambridge University Press (CUP)

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Hill, R. J., and Howard, C. J. (1986). “A Computer Program for Rietveld Analysis of Fixed Wavelength X-ray and Neutron Powder Diffraction Patterns: Version LHPMI,” Australian Atomic Energy Commission, Report No. AAEC/ M112.
Snyder (1989) Miner. Soc. Am. Revi. Miner. Quantitative Analysis 20, 101
The Rietveld Method, edited by R. A. Young (1993). (International Union of Crystallography, Oxford University Press, Oxford).
Krumm, S. (1994). “WINFIT1.0—A Public Domain Program for Interactive Profile-Analysis under WINDOWS,” Proceedings of the XIIIth Conference on Clay Mineralogy and Petrology, Prague, 1994 (unpublished).
King (1971) Light Metals The Iron Minerals in Jamaician Bauxites 3, 18
Roach (1989) J. Light Metals Mineralogy and the Grinding and Settling Properties of Western Australian Bauxite 4, 275
Bish (1993) Am. Mineral. Quantitative Mineralogical Analysis using the Rietveld Full-Pattern Method 78, 932
Bardossy, G. Y. (1983). “Comparison of the Main Lateritic Bauxite Regions of our Globe,” in Laterization Process, edited by A. J. Melfi and A. Carvalho, Proceedings of the II International Seminar on Laterization Processes, Brazil (unpublished), pp. 15–51.
Wells, M. A. (1997). “Mineral, Chemical and Magnetic Properties of Synthetic Metal-Substituted Goethites and Hematites,” Ph.D. thesis, University of Western Australia, p. 406.
Brindley, G. W. (1980). “Quantitative X-ray Mineral Analysis of Clays,” in Crystal Structure of Clay Minerals and their X-ray Identification, edited by G. W. Brindley and G. Brown (Mineralogical Society, London).
Brown (1974) Light Metals Some Studies of Iron Mineral Transformations during High Temperature Digestion of Jamaician Bauxite 3, 825
Wegge, S., Thornber, M. R., Darragh, P. J., and Morgan, M. “Characterisation of Selected Bauxites from Cape York Peninsula (Australia),” Miner. Deposita (in press).
O’Connor (1991) Adv. X-Ray Anal. Strategies for Preferred Orientation Corrections in X-ray Powder Diffraction using Line Intensity Ratios 34, 409
Not Yet Imported: Journal of Power Sources - journal-article : 10.1016/0378-7753(83)87015-3

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Klug, H. P., and Alexander, L. E. (1974). X-ray Diffraction Procedures for Polycrystalline and Amorphous Materials, 2nd ed. (Wiley, New York).
Perinet (1972) C.R. Acad. Sci. Paris C Sur Les Paramèters Cristallographiques des Hématites Alumineuses 275, 1021


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