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The occurrence of coarse-grained massive tilleyite in the Redcap Creek magmatic skarn, North Queensland

Published online by Cambridge University Press:  05 July 2018

M. J. Rubenach
Affiliation:
Geology Department, James Cook University, Townsville, Queensland 4811, Australia
C. Cuff
Affiliation:
Geology Department, James Cook University, Townsville, Queensland 4811, Australia

Abstract

Endoskarns formed where a swarm of diorite dykes have intruded calcite marble at Redcap Creek include an inner melilite-dominated, a wollastonite-dominated, and an outer massive tilleyite zone in contact with marble. The massive tilleyite is unusual in that it is coarse-grained (prisms 2–15 cm in length) and its deep grey colour contrasts with the lighter coloured varieties described elsewhere. A chemical analysis gives a formula close to ideal, with only minor substitution of Al, Ti, and Mg. Refined unit cell parameters are in close agreement with those quoted in the literature. The skarns have clearly formed by transport of Si, Mg, Fe, Al, and Ti from the igneous rocks, and Ca in the reverse direction from the marble. Activity diagrams derived from experimental data are most useful in interpreting the zonal sequence of endoskarns, and preliminary results suggest mass transfer at low Xco2 and temperature of the order of 800°C or higher for the formation of the massive tilleyite.

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

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References

Blake, D. H., Elwell, R. W. D., Gibson, I. L., Skelhorn, R. R., and Walker, G. P. L. (1965) Q. J. Geol. Soc. Lond. 121, 31-49.Google Scholar
Bunno, M., Shimazaki, H., and Sato, K. (1982) Mining Geol. 32, 141-50.Google Scholar
Burnham, C. W. (1959) Bull. Geol. Soc. Am. 77, 879920.Google Scholar
Burt, D. M. (1977) Rend. Soc. ltal. di Mineral. Petrol. 33, 859-73.Google Scholar
Harker, R. L., and Tuttle, D. F. (1956) Am. J. Sci. 254, 239-56.Google Scholar
Henmi, C., and Henmi, K. (1978) Mineral J. 9, 106-10.Google Scholar
Joesten, R. (1974) Am. J. Sci. 274, 876901.Google Scholar
Kerrick, D. M. (1977) J. Petrol. 18, 144-81.Google Scholar
Keyser, F. de, and Wolff, K. W. (1964) Bull. Bur. Mineral. Resourc. Geol. Geophys. Austral. 70, 136 pp.Google Scholar
Korzhinskii, D. S. (1959) Physiochemical Basis ofAnalysis of the Paragenesis ofMinerals. Consultants Bureau Inc., N.Y. 142 pp.Google Scholar
Korzhinskii, D. S. (1970) Theory of Metasomatic Zoning (English trans lation). Oxford, Clarendon Press, 162 pp.Google Scholar
Larsen, E. S., and Dunham, K. C. (1933) Am. Mineral. 18, 469-73.Google Scholar
Louisnathan, S. J., and Smith, J. V. (1970) Z. Kristallogr. 132, 288-306.Google Scholar
Nockolds, S. R. (1947) Mineral. Mag. 28, 151-8.Google Scholar
Paverd, A. L. (1972) Contact metamorphism and mineralization at Mt. Redcap, North Queensland. James Cook University of North Queensland, unpubl. Ph.D. thesis.Google Scholar
Paverd, A. L. (1981) In Process Mineralogy; Extractive Metal lurgy, Mineral Exploration, Energy Resources. (Hansen, D. M., ed.). Amer. Inst. Min. and Metall., N.Y., 179-86.Google Scholar
Pertsev, N. N. (1974) Int. Geol. Rev. 16, 572-82.Google Scholar
Richards, D. N. G. (1981) Granitoids of the northern Tate Batholith, Chillagoe, north Queensland. James Cook University of North Queensland, unpubl. Ph.D. thesis.Google Scholar
Smith, J. V. (1953) Acta Crystallogr. 6, 9-18.Google Scholar
Thompson, J. B. (1959) In Researches in Geochemistry, 1 (Abelson, P. H., ed.). John Wiley, New York, 427-57.Google Scholar
Thompson, J. B. (1970) Geochim. Cosmochim. Acta, 34, 529-51.Google Scholar
Tilley, C. E. (1947) Bull. Comm. Geol. Finlande, 140, 97-104.Google Scholar
Treiman, A. H., and Essene, E. J. (1983) Am. J. Sci. 283-A, 97120.Google Scholar
Walter, L. S. (1963) Am. J. Sci. 261, 488-500.Google Scholar
Zharikov, V. A., and Shmulovich, K. I. (1969) Geochem. Internat. 6, 853-69.Google Scholar