Formation of Anorthositic Rocks within the Blair River Inlier of Northern Cape Breton Island, Nova Scotia (Canada)

Author:

Shellnutt J. Gregory1ORCID,Dostal Jaroslav2,Keppie J. Duncan3,Keppie D. Fraser4

Affiliation:

1. Department of Earth Sciences National Taiwan Normal University 88 Tingzhou Road Section 4 Taipei 11677 Taiwan ntnu.edu.tw

2. Department of Geology Saint Mary’s University 923 Robie Street Halifax Nova Scotia B3H 3C3 Canada smu.ca

3. Departamento de Geología Regional Instituto de Geología Universidad Nacional Autónoma de México 04510 Mexico DF Mexico unam.mx

4. Department of Energy Government of Nova Scotia Joseph Howe Building 12th Floor 1690 Hollis Street Halifax Nova Scotia B3J 3J9 Canada novascotia.ca

Abstract

Abstract Rocks from the Blair River inlier of Northern Cape Breton Island (Nova Scotia, Canada) have been correlated with either the Grenville basement of eastern Laurentia or the accreted Avalon terrane. Additional zircon U-Pb dates of spatially associated anorthositic dykes (425.1±2.2 Ma) and a metagabbro (423.8±2.5 Ma) from the Fox Back Ridge intrusion of the Blair River inlier reveal Late Silurian emplacement ages. Their contemporaneity suggests that they may be members of a larger intrusive complex. The anorthositic rocks have high Eu/Eu∗ values (>2.5), and bulk compositions are similar to the mineral compositions of labradorite (An50-70) and andesine (An30-50). The metagabbro is compositionally similar to alkali basalt and does not seem to have been affected by crustal contamination (Nb/U>24; Th/NbPM≤1.1) although it was metamorphosed. The high Tb/YbN (1.8-1.9) ratios suggest that the parental magma of the metagabbro was derived from a garnet-bearing peridotite. Fractional crystallization and mass balance calculations indicate that the anorthositic rocks can be derived by mineral accumulation from a mafic parental magma similar in composition to the metagabbro of this study. The Late Silurian ages suggest that the rocks were emplaced into the Avalon terrane after the closure of the Iapetus Ocean but before Early Devonian (415-410 Ma) sinistral transpression.

Funder

Natural Sciences and Engineering Research Council of Canada

Ministry of Science and Technology, Taiwan

Publisher

GeoScienceWorld

Subject

Geology

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