Mantle reservoirs and mafic magmatism associated with the break-up of Gondwana : the Balleny Plume and the Australian-Antarctic discordance : U-Pb zircon dating of a Proterozoic mafic dyke swarm in the Vestfold Hills, East Antarctica ...

Part 1: Within the recent literature, the isotopic heterogeneity of ocean island basalts (OIB) is generally ascribed to mixing between any two or more of four isotopically distinct mantle end-member components - DMM, HIMU, EMI and EMU - the origin and precise location of which are still the subject...

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Bibliographic Details
Main Author: Lanyon, R
Format: Thesis
Language:unknown
Published: University Of Tasmania 2023
Subjects:
Online Access:https://dx.doi.org/10.25959/23232377
https://figshare.utas.edu.au/articles/thesis/Mantle_reservoirs_and_mafic_magmatism_associated_with_the_break-up_of_Gondwana_the_Balleny_Plume_and_the_Australian-Antarctic_discordance_U-Pb_zircon_dating_of_a_Proterozoic_mafic_dyke_swarm_in_the_Vestfold_Hills_East_Antarctica/23232377
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Summary:Part 1: Within the recent literature, the isotopic heterogeneity of ocean island basalts (OIB) is generally ascribed to mixing between any two or more of four isotopically distinct mantle end-member components - DMM, HIMU, EMI and EMU - the origin and precise location of which are still the subject of much debate. An attempt is made here to constrain the geochemical characteristics of these end-member components using literature-derived endmember OIB data. This has confirmed the presence of consistent trace element differences and also suggested certain major element distinctions, which are interpreted to reflect diverse end-member mantle source compositions rather than differences in the pressure and temperature of melting involved in OIB production. EMI basalts, which extend to the lowest \\(^{143}\\)Nd/\\(^{144}\\)Nd values of all OIB, were found to possess the most distinctive major element characteristics, the latter evident as higher SiO\\(_2\\) and lower FeO*, CaO, TiO\\(_2\\), P\\(_2\\)O\\(_5\\) and ...