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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Limpopo Basin (1)
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Southern Africa
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South Africa
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Limpopo South Africa (1)
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Asia
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Indian Peninsula
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India
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Dharwar Craton (1)
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Southern Granulite Terrain (2)
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Tamil Nadu India (3)
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Sri Lanka (1)
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commodities
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mineral deposits, genesis (1)
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phosphate deposits (1)
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elements, isotopes
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metals
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rare earths (1)
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geochronology methods
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U/Pb (2)
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geologic age
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Paleozoic
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Cambrian (2)
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Ordovician (1)
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Precambrian
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Archean
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Paleoarchean (1)
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upper Precambrian
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Proterozoic
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Neoproterozoic (3)
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igneous rocks
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igneous rocks
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plutonic rocks
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ultramafics (3)
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ophiolite (1)
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metamorphic rocks
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metamorphic rocks
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granulites (2)
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metaigneous rocks
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metagabbro (1)
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metaperidotite (1)
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metapyroxenite (1)
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metasedimentary rocks (1)
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ophiolite (1)
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minerals
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oxides
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hoegbomite (1)
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iron oxides (1)
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magnetite (1)
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spinel (1)
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phosphates
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apatite (1)
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monazite (1)
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silicates
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chain silicates
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aenigmatite group
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sapphirine (3)
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amphibole group (1)
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pyroxene group (1)
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orthosilicates
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nesosilicates
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zircon group
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zircon (1)
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Primary terms
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absolute age (2)
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Africa
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Limpopo Basin (1)
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Southern Africa
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South Africa
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Limpopo South Africa (1)
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Asia
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Indian Peninsula
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India
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Dharwar Craton (1)
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Southern Granulite Terrain (2)
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Tamil Nadu India (3)
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Sri Lanka (1)
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crystal chemistry (3)
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geochemistry (2)
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igneous rocks
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plutonic rocks
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ultramafics (3)
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intrusions (2)
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magmas (2)
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mantle (1)
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metals
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rare earths (1)
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metamorphic rocks
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granulites (2)
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metaigneous rocks
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metagabbro (1)
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metaperidotite (1)
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metapyroxenite (1)
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metasedimentary rocks (1)
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metamorphism (3)
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metasomatism (1)
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mineral deposits, genesis (1)
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orogeny (1)
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paleogeography (1)
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Paleozoic
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Cambrian (2)
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Ordovician (1)
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petrology (2)
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phase equilibria (1)
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phosphate deposits (1)
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plate tectonics (1)
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Precambrian
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Archean
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Paleoarchean (1)
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upper Precambrian
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Proterozoic
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Neoproterozoic (3)
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tectonics (1)
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Review of the thermo-tectonic evolution of the Central Zone of the Limpopo Complex with implications for conflicting published geodynamic models
Extreme thermal metamorphism associated with Gondwana assembly: Evidence from sapphirine-bearing granulites of Rajapalayam, southern India
Magnetite-apatite deposit from Sri Lanka: Implications on Kiruna-type mineralization associated with ultramafic intrusion and mantle metasomatism
Primary magmatic amphibole in Archaean meta-pyroxenite from the central zone of the Limpopo Complex, South Africa
Diopsidites from a Neoproterozoic–Cambrian suture in southern India
Ultrahigh-temperature metamorphism and decompression history of sapphirine granulites from Rajapalaiyam, southern India: implications for the formation of hot orogens during Gondwana assembly
Abstract We report the first quantitative compositional data on fluid inclusions in ultrahigh-temperature (UHT) granulites from the Napier Complex of Enderby Land, East Antarctica. Fluid inclusions in various high-grade minerals such as garnet, orthopyroxene and sapphirine from three UHT localities in the Amundsen Bay area were studied in terms of petrography and microthermometry as well as laser Raman spectroscopy. Measured melting temperatures of inclusions from all the three localities indicate that the trapped fluid phase is dominantly carbonic. Raman analyses confirmed a near pure CO 2 composition with only minor dilutants such as N 2 (<6.0 mol%), CH 4 (<0.3 mol%), and H 2 O (<0.1 mol%). CH 4 -bearing fluid associated with sapphirine granulites suggests low oxygen fugacity ( f O 2 ) conditions for the rocks, whereas CH 4 was not detected from fluid inclusions in magnetite-bearing high- f O 2 garnet granulite. The range of CO 2 isochores computed from density measurements in fluid inclusions from the granulites pass through the peak P – T conditions of the Napier metamorphism ( T = 1050–1150 °C, P =9–11 kbar) indicating synmetamorphic nature of the fluids. Inclusions in garnet from Bunt Island coexist with carbonate minerals (magnesite) and graphite along with dense CO 2 -rich fluid, indicating probable derivation from deep-seated primary magmatic sources. The ubiquitous association of carbonic fluids in the UHT mineral assemblages suggests CO 2 influx during extreme crustal metamorphism of the Napier Complex. The carbonic fluid probably played an important role in transporting heat from mantle or mantle-derived magmas and in stabilizing the dry mineral assemblages.