Palaeozoic terrane amalgamation in Central Europe: a REE and Sm-Nd isotope study of the pre-Variscan basement, NE Bohemian Massif

Author:

Crowley Quentin G.12,Timmermann Hilke23,Noble Stephen R.2,Holland J. Grenville4

Affiliation:

1. School of Earth Sciences and Geography, Keele University Staffordshire ST5 5BG, UK

2. NERC Isotope Geosciences Laboratory, British Geological Survey Keyworth, Nottingham NG12 5GG, UK qcrowley@bgs.ac.uk

3. Institute für Geowissenschaften und Lithosphärenforschung JLU, Giessen, D-35390, Germany

4. Department of Geological Sciences, University of Durham Durham DH1 3LE, UK

Abstract

AbstractThe West Sudetes, NE Bohemian Massif, comprises several suspect terranes accreted to the margins of Laurussia during Variscan orogenesis. Whole rock REE and Sm-Nd isotope data for seven separate provinces (Izera, Kaczawa, Rudawy Janowickie and Kłodzko complexes; Fore-Sudetic and Góry Sowie Blocks; Slęża Ophiolite) suggest involvement of a variety of crustal and mantle sources. Felsic metasedimentary rocks (ɛNd(t) = −8.3 to −5.0) have two stage TDM ages of 1.9 to 1.5 Ga, whereas acidic metavolcanic rocks and granite gneisses (ɛNd(t) = −5.4 to +0.8) have two stage TDM ages of 1.5 to 1.0 Ga. A range of sources is implicated: predominantly Archaean and Palaeoproterozoic sources for the metasedimentary rocks, and Archaean. Palaeoproterozoic and Neoproterozoic to early Palaeozoic sources for the meta-igneous felsic lithologies. LREE depleted tholeiitic metabasites ((Ce/Yb)N = 0.8 to 3.4) generally have ɛNd(t) = +4.0 to +9.1, indicating derivation from depleted mantle asthenosphere. LREE enriched meta-alkali basalts ((Ce/Yb)N = 4.6 to 10.1) with ɛNd(t) between +3.1 and +7.0 implicate utilization of enriched mantle asthenosphere.Analogous lithologies from elsewhere in the Sudetes, North Bohemian Massif and the Armorican Terrane Assemblage have similar REE abundances, ɛNd values and TDM ages. Complexes previously considered to have had disparate Neoproterozoic to early Palaeozoic histories may be integrated into a unifying geodynamic model of derivation from the North Gondwanan (North African) margin during a widespread episode of continental margin break-up.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

Reference108 articles.

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