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Cordierite in the peraluminous granites of the Meguma Zone, Nova Scotia, Canada

Published online by Cambridge University Press:  05 July 2018

Lynne A. Maillet
Affiliation:
Department of Geology, Dalhousie University, Halifax, Nova Scotia, Canada B3H 3J5
D. Barrie Clarke
Affiliation:
Department of Geology, Dalhousie University, Halifax, Nova Scotia, Canada B3H 3J5

Abstract

The peraluminous granitoid intrusions of southern Nova Scotia contain several mineralogical expressions of the excess alumina, including variable amounts of cordierite, in different textural types of granitoids, ranging from fine-grained aplites through coarser grained monzogranites and granodiorites, to very coarse-grained pegmatites. A detailed study of the spatial, textural and chemical characteristics of these cordierites suggests that the majority are of relict metamorphic origin, but that primary magmatic cordierites, as well as cordierites which grew in equilibrium with a water-rich fluid phase, also occur.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1985

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References

Abbott, R. N., Jr., and Clarke, D. B. (1979) Can. Mineral. 17, 54960.Google Scholar
Allan, B. D., and Clarke, D. B. (1981) Ibid. 19, 1924.Google Scholar
Allen, P. L., and Barr, S. M. (1983) Ibid. 21, 583-90.Google Scholar
Bellido, F., and Barrera, J. L. (1979) Estudios GeoI6gicos, 35, 279-84.Google Scholar
Birch, W. D., and Gleadow, A. J. W. (1974) Contrib. Mineral. Petrol. 45, 113.CrossRefGoogle Scholar
Brammall, A., and Harwood, H. F. (1923) Mineral. Mag. 20, 39-53.Google Scholar
Clarke, D. B. (1981) Can. Mineral. 19, 3-17.Google Scholar
Clarke, D. B. and Halliday, A. N. (1980) Geochim. Geochem. Acta, 44, 1045-58.CrossRefGoogle Scholar
Clarke, D. B., McKenzie, C. B., Muecke, G. K., and Richardson, S. W. (1976) Contrib. Mineral. Petrol. 56, 279-87.CrossRefGoogle Scholar
Clemens, J. D., and Wall, V. J. (1981) Can. Mineral. 19, 111-31.Google Scholar
Deer, W. A., Howie, R. W., and Zussman, J. (1965) An Introduction to the Rock-Forming Minerals. Longmans, London.Google Scholar
Flood, R. H., and Shaw, S. E. (1975) Contrib. Mineral. Petrol. 52, 157-64.CrossRefGoogle Scholar
Haslam, H. W. (1983) Mineral. Mag. 47, 238-40.CrossRefGoogle Scholar
Heinrich, E. W. (1955) Am. Mineral. 35, 173-84.Google Scholar
Hensen, B. J., and Green, D. H. (1973) Contrib. Mineral. Petrol. 38, 155-66.CrossRefGoogle Scholar
Jamieson, R. A. (1974) The contact of the South Mountain Batholith near Mt. Uniacke, Nova Scotia. Hons. B.Sc. thesis, Dalhousie University.Google Scholar
Jamieson, R. A. (1984) Contrib. Mineral. Petrol. 86, 309-20.CrossRefGoogle Scholar
MacDonald, M. A. (1981) The mineralogy, petrology and geochemistry of the Musquodoboit Batholith. M.Sc. thesis, Dalhousie University.Google Scholar
Maillet, L. A. (1984) The occurrence and origin of cordierite in the South Mountain Batholith. Hons. B.Sc. thesis, Dalhousie University.Google Scholar
Morin, J. A., and Turnock, A. C. (1975) Can. Mineral. 13, 352-7.Google Scholar
Phillips, G. N., Wall, V. J., and Clemens, J. D. (1981) Can. Mineral. 19, 47-63.Google Scholar
Priem, H. N. A., Andriessen, P. A. M., Boelrijk, N. A. I. M., Hebeda, E. H., Hutchison, C. S., Verdurmen, E. A. T., and Verschure, R. H. (1978) Geol. Mijnb. 57, 441-3.Google Scholar
Speer, J. A. (1981) Can. Mineral. 19, 3546.Google Scholar
Wang, L., Zhao, B., Zhu, W., Cai, Y., and Li, T. (1980) In Granitic Magmatism and Related Mineralization (Ishihara, S. and Takenouchi, S., eds.) Mining Geol., Special Issue, 8, 29-38.Google Scholar