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Origin of continental crust of 1.9-1.7 Ga age: Nd isotopes and U-Pb zircon ages in the Svecokarelian terrain of South Finland
Authors:Jonathan Patchett  Olavi Kouvo
Institution:(1) Max-Planck-Institut für Chemie, Saarstraße 23, D-6500 Mainz, FRG;(2) Geological Survey of Finland, SF-02150 Espoo, Finland;(3) Present address: Department of Geosciences, University of Arizona, 85721 Tucson, AZ, USA
Abstract:Initial Nd isotopic ratios are reported for 23 samples representing magmatic crustal components in the Svecokarelian terrain of South Finland. U-Pb zircon ages are determined for all geologic units, involving 21 separate upper concordia intercept ages based on more than 100 UP-b analyses. The ages range for all the rocks from 1.90 Ga for primitve plutonic rocks to 1.79 Ga for post-tectonic intrusions. The well-known gabbro-diorite-tonalite-trondhjemite association of the Kalanti district appears to consist of components with different ages: trondhjemites are probably 1.90 Ga or older, diorites/tonalites belong to the main Svecokarelian plutonic eposide at 1.89-1.87 Ga, and at least some gabbro has a post-tectonic age of 1.80 Ga. epsiv Nd (T) values range between +2 to +3 for meta-andesites, large gabbros and primitive granitoids to –0.5 for more evolved granitoids. A magma source with epsiv Nd of at least +2 to +3 was available during 1.90 to 1.87 Ga, but evolved granitoids have epsiv Nd close to zero. The preferred interpretation is that depleted mantle with epsiv Nd=+4 to +5 was present beneath the Svecokarelian crust forming during 1.9-1.8 Ga, and that all rocks have been affected more or less by addition of an Archean crustal component with epsiv Nd=–9 to –13. The primitive rocks with epsiv Nd=+2 to + 3 were only slightly affected, while granitoids with epsiv Nd close to zero include a sim10% Archean component. The widespread nature of the Archean addition and the distance of up to 500 km to actual exposed Archean crust make it most realistic that the Archean component was added to the form of sediments delivered by subducting Proterozoic ocean crust. The plutonic rocks of the Finnish Svecokarelian crust in areas away from Archean cratons consist of sim90% newly mantle-derived material.
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