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Smectite-Rich Pisolites of the Andersonville, Georgia, Area

Published online by Cambridge University Press:  01 July 2024

J. P. Manker
Affiliation:
Department of Earth Science, Georgia Southwestern College, Americus, Georgia 31709
H. E. Cofer
Affiliation:
Department of Earth Science, Georgia Southwestern College, Americus, Georgia 31709

Abstract

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Type
Note
Copyright
Copyright © Clay Minerals Society 1980

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References

Bárdossy, Gy Csanády, A. and Csordás, A., (1978) Scanning electron microscope study of bauxites of different ages and origins Clays & Clay Minerals 26 245262.CrossRefGoogle Scholar
Grim, R. E., (1968) Clay Mineralogy New York McGraw-Hill.Google Scholar
Kaye, C. A., (1967) Fossiliferous bauxite in glacial drift, Martha’s Vineyard, Massachusetts Science 157 10351037.CrossRefGoogle ScholarPubMed
Valeton, I., (1972) Bauxites, Vol. 1 New York Developments in Soil Science, Elsevier.Google Scholar
Weaver, C. E., (1968) Relations of compositions to structures of dioctahedral 2:1 clay minerals Clays & Clay Minerals 16 5161.CrossRefGoogle Scholar
Weaver, C. E. and Pollard, L. D., (1973) The Chemistry of Clay Minerals New York Elsevier.Google Scholar
Zapp, A. D., (1948) Geology of the Andersonville bauxite district, Georgia U.S. Geol. Surv. Open-File Report .CrossRefGoogle Scholar
Zapp, A. D. (1965) Bauxite deposits of the Andersonville district, Georgia: U.S. Geol. Surv. Bull. 1199–G, 37 pp.Google Scholar