Board, W S; Frimmel, Hartwig E; Armstrong, Robert A (2005): Representative analyses of pre-tectonic metabasic rocks and metapelitic gneiss from Sverdrupfjella, East Antarctica [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.847094, Supplement to: Board, WS et al. (2005): Pan-African tectonism in the western Maud Belt: P-T-t path for high-grade gneisses in the H.U. Sverdrupfjella, East Antarctica. Journal of Petrology, 46(4), 671-699, https://doi.org/10.1093/petrology/egh093
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Published: 2005 (exact date unknown) • DOI registered: 2015-07-14
Abstract:
Extensive high-grade polydeformed metamorphic provinces surrounding Archaean cratonic nuclei in the East Antarctic Shield record two tectono-thermal episodes in late Mesoproterozoic and late Neoproterozoic-Cambrian times. In Western Dronning Maud Land, the high-grade Mesoproterozoic Maud Belt is juxtaposed against the Archaean Grunehogna Province and has traditionally been interpreted as a Grenvillian mobile belt that was thermally overprinted during the Early Palaeozoic. Integration of new U-Pb sensitive high-resolution ion microprobe and conventional single zircon and monazite age data, and Ar-Ar data on hornblende and biotite, with thermobarometric calculations on rocks from the H.U. Sverdrupfjella, northern Maud Belt, resulted in a more complex P-T-t evolution than previously assumed. A c. 540 Ma monazite, hosted by an upper ampibolite-facies mineral assemblage defining a regionally dominant top-to-NW shear fabric, provides strong evidence for the penetrative deformation in the area being of Pan-African age and not of Grenvillian age as previously reported. Relics of an eclogite-facies garnet-omphacite assemblage within strain-protected mafic boudins indicate that the peak metamorphic conditions recorded by most rocks in the area (T = 687-758°C, P = 9·4-11·3 kbar) were attained subsequent to decompression from P > 12·9 kbar. By analogy with limited U-Pb single zircon age data and on circumstantial textural grounds, this earlier eclogite-facies metamorphism is ascribed to subduction and accretion around 565 Ma. Post-peak metamorphic K-metasomatism under amphibolite-facies conditions is ascribed to the intrusion of post-orogenic granite at c. 480 Ma. The recognition of extensive Pan-African tectonism in the Maud Belt casts doubts on previous Rodinia reconstructions, in which this belt takes a pivotal position between East Antarctica, the Kalahari Craton and Laurentia. Evidence of late Mesoproterozoic high-grade metamorphism during the formation of the Maud Belt exists in the form of c. 1035 Ma zircon overgrowths that are probably related to relics of granulite-facies metamorphism recorded from other parts of the Maud Belt. The polymetamorphic rocks are largely derived from a c. 1140 Ma volcanic arc and 1072 ± 10 Ma granite.
Project(s):
Funding:
German Research Foundation (DFG), grant/award no. 5472008: Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas
Coverage:
Median Latitude: -72.572381 * Median Longitude: 0.379281 * South-bound Latitude: -72.653520 * West-bound Longitude: 0.167880 * North-bound Latitude: -72.507200 * East-bound Longitude: 0.543180
License:
Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
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4 datasets
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Datasets listed in this publication series
- Board, WS; Frimmel, HE; Armstrong, RA (2005): (Table 3) Representative analyses of garnet, plagioclase and biotite in metapelitic gneiss, East Antarctica. https://doi.org/10.1594/PANGAEA.847092
- Board, WS; Frimmel, HE; Armstrong, RA (2005): (Table 1) Representative analyses of garnet, plagioclase, ilmenite and clinopyroxene for the samples of pre-tectonic metabasic rock, East Antarctica. https://doi.org/10.1594/PANGAEA.847087
- Board, WS; Frimmel, HE; Armstrong, RA (2005): (Table 2) Representative analyses of hornblende and biotite for the samples of pre-tectonic metabasic rock, East Antarctica. https://doi.org/10.1594/PANGAEA.847088
- Board, WS; Frimmel, HE; Armstrong, RA (2005): (Table 9) Summary of SHRIMP U-Pb single zircon spot analyses. https://doi.org/10.1594/PANGAEA.847093