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  • 1990-1994  (2)
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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Contributions to mineralogy and petrology 105 (1990), S. 650-661 
    ISSN: 1432-0967
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Notes: Abstract Meta-igneous granulite (MIG) xenoliths in lavas from Mount Ruapehu, Taupo Volcanic Zone, New Zealand, have variable but relatively high δ18O (+8.2 to +11.7) and 87Sr/86Sr (0.70506 to 0.70872), and εNd ranging from +1.5 to +6.2. They show a strong positive correlation between 87Sr/86Sr and δ18O, both of which are also broadly correlated with Mg number, but lack any correlation between 87Sr/86Sr and εNd. The xenoliths have been mineralogically re-equilibrated at lower-crustal temperatures (800–930°C) and pressures (7–10 kbar). Geochemical and isotopic evidence suggests they are fragments of oceanic crust that have been altered previously in an ocean floor hydrothermal system. Alternatively, they may be igneous rocks of unknown origin hydrothermally altered in the lower crust. Irrespective of this uncertainty, the xenoliths provide rare samples of the lower crustal basement beneath Taupo Volcanic Zone and represent a potential source rock for the voluminous rhyolites and ignimbrites that dominate the zone.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2019-06-24
    Description: Cogenetic volatile-rich alkali basalts and gabbros, hawaiites, and mugearites occur in the late Miocene age epizonal Porgera intrusive complex, which is temporally and spatially associated with rich gold-silver mineralization. The least evolved rocks show enrichments in light rare earth elements ([La/Yb]cn = 15-19) and other incompatible elements (e.g., Ba/La ≈ 8-10, La/Nb ≈ 0.6-0.7, Sr/Nd ≈ 25) characteristic of intraplate alkalic basalts and have isotopic compositions (87Sr/86Sr ≈ 0.7035, ϵNd ≈ +6, 206Pb/204Pb ≈ 18.66, 207Pb/204Pb ≈ 15.56, 298Pb/204Pb ≈ 38.55) consistent with derivation from a time-averaged depleted mantle source. The Porgera intrusive complex was emplaced at 6 Ma in Jurassic-Cretaceous shelf-facies sedimentary rocks near the edge of the Australasian plate. Intrusion appears to have occurred in a back-arc environment during subduction of an oceanic microplate segment on two sides, beneath the continental margin and an island arc. We suggest that this unusual tectonic setting promoted partial melting of asthenospheric source materials that were perhaps modified by deep (〉150 km) subduction processes to form alkalic magmas with intraplate character.
    Type: Article , PeerReviewed
    Format: text
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