Silicocarbonatitic melt inclusions in fluorapatite from the Yates prospect, Otter Lake, Québec: Evidence of marble anatexis in the central metasedimentary belt of the Grenville Province

Author:

Schumann Dirk1,Martin Robert F.2,Fuchs Sebastian3,de Fourestier Jeffrey45

Affiliation:

1. Fibics Incorporated, 1431 Merivale Road, Ottawa, Ontario K2E 0B9, Canada

2. Department of Earth and Planetary Science, McGill University, 3450 University Street, Montreal, Québec H3A 0E8, Canada

3. Marine Mineral Resources, GEOMAR Helmholtz Centre for Ocean Research Kiel, Wischhofstrasse 1-3, Geb. 8A-112, D-24148 Kiel, Germany

4. Mineralogical Research, 28 Broad Street, Gatineau, Québec J9H 4H3, Canada

5. Key State Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, People's Republic of China

Abstract

Abstract We have investigated a locality very well known to mineral collectors, the Yates U-Th prospect near Otter Lake, Québec. There, dikes of orange to pink calcite enclose euhedral prisms of fluorapatite, locally aligned. Early investigators pointed out the importance of micro-inclusions in the prisms. We describe and image the micro-inclusions in two polished sections of fluorapatite prisms, one of them with a millimetric globule of orange calcite similar to that in the matrix. We interpret the globule to have been an inclusion of melt trapped during growth. Micro-globules disseminated in the fluorapatite are interpreted to have crystallized in situ from aliquots of the boundary-layer melt enriched in constituents rejected by the fluorapatite; the micro-globules contain a complex jigsawed assemblage of carbonate, silicate, and sulfate minerals. Early minerals to crystallize are commonly partly dissolved and partly replaced by lower-temperature phases. Such jigsawed assemblages seem to be absent in the carbonate matrix sampled away from the fluorapatite prisms. The pressure and temperature attained at the Rigolet stage of the Grenville collisional orogeny were conducive to the anatexis of marble in the presence of H2O. The carbonate melt is considered to have become silicocarbonatitic by assimilation of the enclosing gneisses, which were also close to their melting point. Degassing was important, and the melt froze quickly. The evidence points to a magmatic origin for the carbonate dikes and the associated clinopyroxenite, rather than a skarn-related association.

Publisher

Mineralogical Association of Canada

Subject

Geochemistry and Petrology

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