Lithos2022,Vol.424/42524.DOI:10.1016/j.lithos.2022.106756

Geochronology of scapolite pegmatites from the Nord0yane ultra-high-pressure domain,Western Gneiss Region,Norway: Protracted crystal-melt reaction during Scandian exhumation

CD.Bryden R.A.Jamieson Y.Luo
Lithos2022,Vol.424/42524.DOI:10.1016/j.lithos.2022.106756

Geochronology of scapolite pegmatites from the Nord0yane ultra-high-pressure domain,Western Gneiss Region,Norway: Protracted crystal-melt reaction during Scandian exhumation

CD.Bryden 1R.A.Jamieson 1Y.Luo2
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作者信息

  • 1. Department of Earth and Environmental Sciences,Dalhousie University,Halifax,NS B3H 4R2,Canada
  • 2. Department of Earth and Atmospheric Sciences,University of Alberta,Edmonton,AB T6G 2E3,Canada
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Abstract

Titanite and zircon from a suite of scapolite pegmatites in the Nord0yane ultra-high-pressure domain,Western Gneiss Region,Norway,were analysed by laser ablation-inductively coupled plasma-mass spectrometry(LA-ICP-MS).Titanite yielded U-Pb ages ranging from 420 to 390 Ma,with dates from prismatic crystals overlapping at 400-390 Ma.Complex zoning and resorption of older titanite grains(>415 Ma),interpreted as inherited,suggests that protracted crystal-melt reaction led to variable REE enrichment.Zircon rim zones yielded U-Pb ages of 392-385 Ma,with inherited cores yielding~(207)Pb/~(206)Pb ages of 1774-1575 Ma.In combination,the zircon and titanite U-Pb data suggest that the pegmatites crystallised at ca.400-385 Ma,consistent with the results of earlier studies.Trace element data are compatible with crystallisation at amphibolite facies conditions from melts in which fluid activity may have increased with time.Based on the ages of inherited zircon cores and titanite eNd_(400)values of-8 to-11,the melts that gave rise to the scapolite pegmatites are interpreted to have been derived from Proterozoic Baltican crust.Partial melting initiated during subduction of Baltican crust in response to an influx of mantle fluid,with melt production greatly enhanced during exhumation and decompression.Complex zoning and age signatures in both titanite and zircon point to crystal-melt-fluid interaction over a protracted interval of melt production,migration,and crystallisation.

Key words

U-Pb geochronology/Zircon/Titanite/Scapolite pegmatite/Western Gneiss Region/UHP metamorphism/Tectonics

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出版年

2022
Lithos

Lithos

SCI
ISSN:0024-4937
被引量1
参考文献量67
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