Hostname: page-component-7479d7b7d-k7p5g Total loading time: 0 Render date: 2024-07-11T22:10:34.688Z Has data issue: false hasContentIssue false

Geology, geochemistry and geochronology of a taconic batholith, southwestern Newfoundland

Published online by Cambridge University Press:  03 November 2011

G. R. Dunning
Affiliation:
Department of Earth Sciences, Memorial University of Newfoundland, St John's, Newfoundland, Canada, A1B 3X5.
D. H. C. Wilton
Affiliation:
Department of Earth Sciences, Memorial University of Newfoundland, St John's, Newfoundland, Canada, A1B 3X5.
R. K. Herd
Affiliation:
Geological Survey of Canada, 601 Booth Street, Ottawa, Ontario, Canada, K1A 0E8.

Abstract

Foliated to massive hornblende and biotite-bearing tonalite, trondhjemite and granodiorite comprise a terrane of batholithic dimensions in southwestern to central Newfoundland. These rocks intrude and include Ordovician ophiolite fragments and metasedimentary rocks of Fleur de Lys type, and are cut by a suite of Silurian gabbro-diorite and norite and Siluro-Devonian (?) granite intrusions.

A U/Pb (zircon, sphene) age of 456 ± 3 Ma (2σ) and a K/Ar (hornblende) age of 455 ± 14 Ma (previously reported) for a representative least-deformed tonalite of the Southwest Brook Complex indicate that it crystallised and cooled in Caradoc time. A less precise U/Pb (zircon) age of 428 ± 41 Ma (2σ) is measured for tonalitic Cape Ray Granite in southern Newfoundland. On discrimination diagrams which use Rb, Nb and Y contents to infer tectonic setting, these rocks fall in the field of volcanic arc granites. The occurrence of zircon cores with average ages of 1430 + 18/–17 and 1541 ± 173 Ma (2σ) also indicate that the magmas formed in part by partial melting of Proterozoic crust, or sediments derived from such crust. It is suggested that the tonalitic magmas were generated during the Taconic Orogeny in an arc: continent collision zone at the ancient margin of eastern North America.

Tonalitic rocks in western Newfoundland broadly correlative in age and chemistry with the batholith include the Burlington Granodiorite and Hungry Mountain Complex, as well as allochthonous slices of foliated tonalite emplaced over Ordovician platform carbonates W of Grand Lake.

Type
Research Article
Copyright
Copyright © Royal Society of Edinburgh 1989

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Barker, F. & Arth, J. G. 1976. Generation of trondhjemitic-tonalitic liquids and Archean bimodal trondhjemite-basalt suites. GEOLOGY 4, 501600.2.0.CO;2>CrossRefGoogle Scholar
Brown, P. A. 1975. Basement-cover relationships in southwest Newfoundland. Unpublished Ph.D. Thesis, Memorial University of Newfoundland.Google Scholar
Brown, P. A. 1976. Ophiolites in southwestern Newfoundland. NATURE LONDON 264, 712–15.CrossRefGoogle Scholar
Brown, P. A. 1977. Geology of the Port aux Basques map area (110/10) Newfoundland: Newfoundland Department of Mines and Energy, Report 77–2.Google Scholar
Chappell, B. W. & White, A. J. R. 1974. Two contrasting granite types. PAC GEOL 8, 173–4.Google Scholar
Chorlton, L. B. 1983. Geology of the Grandys Lake area (110/15), Newfoundland Part 1. Geology of the southern Long Range Mountains. Newfoundland: Department of Mines and Energy, Report 83–7, 1116.Google Scholar
Chorlton, L. B. 1984. Geological development of the southern Long Range Mountains, southwest Newfoundland: A regional synthesis. Unpublished Ph.D. Thesis, Memorial University of Newfoundland.Google Scholar
de Albuquerque, C. A. R. 1977. Geochemistry of the tonalitic and granitic rocks of the Nova Scotia southern plutons. GEOCHIM COSMOCHIM ACTA 41, 113.CrossRefGoogle Scholar
Dunning, G. R. 1984. The geology, geochemistry, geochronology and regional setting of the Annieopsquotch Complex and related rocks of southwest Newfoundland. Unpublished Ph.D. Thesis, Memorial University of Newfoundland.Google Scholar
Dunning, G. R., Carter, P. & Best, M. A. 1982. Geology of Star Lake (west half), southwest Newfoundland. GEOL SURV CANADA PAP 82–1B, 21–6.Google Scholar
Dunning, G. R. & Chorlton, L. B. 1983. Imbricate ophiolite and subduction-related intrusions in southwest Newfoundland. GEOL SOC AM, NE SECT, PROG ABSTR, 188.Google Scholar
Dunning, G. R. & Chorlton, L. B. 1985. The Annieopsquotch ophiolite belt of southwest Newfoundland: Geology and tectonic significance. BULL GEOL SOC AM 96, 1466–76.2.0.CO;2>CrossRefGoogle Scholar
Dunning, G. R. & Krogh, T. E. 1985. Geochronology of ophiolites of the Newfoundland Appalachians. CAN J EARTH SCI 22, 1659–70.CrossRefGoogle Scholar
Epstein, R. S. 1983. The eastern margin of the Burlington granodiorite, Newfoundland. Unpublished Ph.D. Thesis, University of Western Ontario.Google Scholar
Fryer, B. J. 1977. Rare earth evidence in iron formation for changing oxidation states. GEOCHIM COSMOCHIM ACTA 41, 361–7.CrossRefGoogle Scholar
Harrison, T. M. 1981. Diffusion of Ar in hornblende. CONTRIB MINERAL PETROL 78, 324–31.CrossRefGoogle Scholar
Haskin, L. A., Frey, F. A. & Wildeman, T. R. 1968. Relative and absolute terrestrial abundances of the rare earths. In Ahrens, L. H. (ed.) Origin and distribution of the elements. INT SER MONOGR EARTH SCI 30, 689912.Google Scholar
Herd, R. K. 1978. Geology of the Puddle Pond area, Red Indian Lake map sheet, Newfoundland. GEOL SURV CANADA PAP 78–1A, 195–7.Google Scholar
Herd, R. K. & Dunning, G. R. 1979. Geology of the Puddle Pond map area, southwestern Newfoundland. GEOL SURV CANADA PAP 79–1A, 305–10.Google Scholar
Karson, J. & Dewey, J. F. 1978. Coastal Complex, western Newfoundland: An early Ordovician oceanic fracture zone. GEOL SOC AM BULL 89, 1037–49.2.0.CO;2>CrossRefGoogle Scholar
Kean, B. F., Dean, P. L. & Strong, D. F. 1981. Regional geology of the Central Volcanic Belt of Newfoundland. In Swanson, E. A., Strong, D. F. & Thurlow, J. G. (eds) The Buchans Orebodies: Fifty Years of Geology and Mining. GEOL ASSOC CAN SPEC PAP 22, 6578.Google Scholar
Kennedy, D. P. S. 1982. Geology of the Corner Brook Lake area, western Newfoundland. Unpublished M.Sc. thesis, Memorial University of Newfoundland.Google Scholar
Krogh, T. E. 1973. A low contamination method for hydrothermal decomposition of zircon and extraction of U and Pb for isotopic age determinations. GEOCHIM COSMOCHIM ACTA 37, 485–94.CrossRefGoogle Scholar
Krogh, T. E. 1982. Improved accuracy of U-Pb zircon ages by the creation of more concordant systems using an air abrasion technique. GEOCHIM COSMOCHIM ACTA 46, 637–49.CrossRefGoogle Scholar
Krogh, T. E. & Davis, G. L. 1975. The production and preparation of 205Pb for use as a tracer for isotopic dilution analyses. CARNEGIE INST WASHINGTON YEARB 74, 416–7.Google Scholar
Lorenz, B. E. & Fountain, J. C. 1982. The South Lake Igneous Complex, Newfoundland: a marginal basin-island arc association. CAN J EARTH SCI 19, 490503.CrossRefGoogle Scholar
Ludwig, K. R. 1980. Calculation of uncertainties of U-Pb isotope data. EARTH PLANET SCI LETT 46, 212–20.CrossRefGoogle Scholar
Malpas, J. G. 1979. Two contrasting trondhjemite associations from transported ophiolites in western Newfoundland: initial report. In Barker, F. (ed.) Trondhjemites, dacites and related rocks. Developments in Petrology, 465–87. Amsterdam: Elsevier.CrossRefGoogle Scholar
Mattinson, J. M. 1975. Early Paleozoic ophiolite complexes of Newfoundland: isotopic ages of zircons. GEOLOGY 3, 181–3.2.0.CO;2>CrossRefGoogle Scholar
Mattinson, J. M. 1977. U-Pb ages of some crystalline rocks from the Burlington Peninsula, Newfoundland, and implications for the age of Fleur de Lys metamorphism. CAN J EARTH SCI 14, 2316–24.CrossRefGoogle Scholar
O'Connor, J. T. 1965. A classification of quartz-rich igneous rocks based on feldspar ratios. US GEOL SURV PROF PAP 525B, 1379–84.Google Scholar
Payne, J. G. & Strong, D. F. 1979. Origin of the Twillingate Trondhjemite, north-central Newfoundland: Partial melting in the roots of an island arc. In Barker, F. (ed.) Trondhjemites, dacites and related rocks. Developments in Petrology, 489516. Amsterdam: Elsevier.CrossRefGoogle Scholar
Pearce, J. A., Harris, N. B. W. & Tindle, A. G. 1984. Trace element discrimination diagrams for the interpretation of granitic rocks. J PET 25, 956983.CrossRefGoogle Scholar
Pedersen, R. B. & Malpas, J. 1985. The origin of oceanic plagiogranites from the Karmoy ophiolite, western Norway. CONTRIB MINERAL PETROL 88, 3652.CrossRefGoogle Scholar
Stacey, J. S. & Kramers, J. D. 1975. Approximation of terrestrial lead isotope evolution by a two stage model. EARTH PLANET SCI LETT 26, 207221.CrossRefGoogle Scholar
Stevens, R. D., Delabio, R. N. & Lachance, G. R. 1982. Age determinations and geological studies. K/Ar isotopic ages, Report 16. GEOL SURV CANADA PAP 82–2.Google Scholar
Thurlow, J. G. 1981. The Buchans Group: Its stratigraphic and structural setting. In, Swanson, E. A., Strong, D. F. & Thurlow, J. G. (eds) The Buchans Orebodies: Fifty Years of Geology and Mining. GEOL ASSOC CAN SPEC PAP 22, 7989.Google Scholar
van Berkel, J. T., Johnston, H. P. & Currie, K. L. 1986. A preliminary report on the geology of the southern Long Range, southwestern Newfoundland. GEOL SURV CANADA PAP 86–1B, 157170.Google Scholar
van Eysinga, F. W. B. (ed.) 1975. Geological Time table, 3rd edn. Amsterdam: Elsevier.Google Scholar
Whalen, J. B., Currie, K. L. & van Breemen, O. 1987. Episodic Ordovician-Silurian plutonism in the Topsails igneous terrane, western Newfoundland. TRANS R SOC EDINBURGH EARTH SCI 78, 1728.CrossRefGoogle Scholar
Williams, H. 1977. The Coney Head Complex: Another Taconic allochthon in west Newfoundland. AM J SCI 277, 1279–95.CrossRefGoogle Scholar
Williams, H. (ed.) 1978. Tectonic-lithofacies map of the Appalachian Orogen. St. Johns: Memorial University of Newfoundland, Map No. 1.Google Scholar
Williams, H. 1979. Appalachian Orogen in Canada. CAN J EARTH SCI 16, 792807.CrossRefGoogle Scholar
Williams, H., Dallmeyer, R. D. & Wanless, R. K. 1976. Geochronology of the Twillingate Granite and Herring Neck Group, Notre Dame Bay, Newfoundland. CAN J EARTH SCI 13, 15911601.CrossRefGoogle Scholar
Wilson, J. T. 1966. Did the Atlantic close and then re-open? NATURE 211, 676–81.CrossRefGoogle Scholar
Wilton, D. H. C. 1983. The geology and structural history of the Cape Ray fault zone in southwestern Newfoundland. CAN J EARTH SCI 20, 11191133.CrossRefGoogle Scholar
Wilton, D. H. C. 1984. Metallogenic, tectonic and geochemical evolution of the Cape Ray Fault Zone with emphasis on electrum mineralization. Unpublished Ph.D. Thesis, Memorial University of Newfoundland.Google Scholar
Wilton, D. H. C. 1985. Tectonic evolution of southwestern Newfoundland as indicated by granite petrogenesis. CAN J EARTH SCI 22, 1080–92.CrossRefGoogle Scholar
Winkler, H. G. F., Das, B. K. & Brietbart, R. 1977. Further data of low-temperature melts existing on the quartz + plagioclase + liquid + vapour isobaric cotectic surface within the system Qz-Ab-Or-An-H2O. NEUES JAHR MINERAL, MONATSCH 6, 241–7.Google Scholar