Search results for "Peridotite"

showing 10 items of 48 documents

Temporal–spatial evolution of low-SiO2 volcanism in the Pleistocene West Eifel volcanic field (West Germany) and relationship to upwelling asthenosph…

2015

Abstract The temporal–spatial evolution of low-SiO 2 lavas from the Pleistocene West Eifel volcanic field (Central European Volcanic Province) and linked petrogenetic variations are evaluated using 40 Ar/ 39 Ar age and geochemical data. Geochronological and petrological evidence is related to the physical structure of the previously established seismologically anomalous asthenosphere interpreted as thermally upwelling mantle (Eifel Plume). Lava flows >480 ka (Middle Pleistocene) occur exclusively in the NW of the volcanic field. After a time span of ca. 400 ka lacking significant activity, volcanism has migrated to the SE generating flows At melting depth >70 km of parental asthenospheric m…

Peridotite[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmospheregeographygeography.geographical_feature_categoryLavaEarth scienceGeochemistryVolcanismMantle (geology)GeophysicsVolcano13. Climate actionAsthenosphereLithosphereUpwelling[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentGeologyComputingMilieux_MISCELLANEOUSEarth-Surface Processes
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Carbon concentration increases with depth of melting in Earth’s upper mantle

2021

Carbon in the upper mantle controls incipient melting of carbonated peridotite and so acts as a critical driver of plate tectonics. The carbon-rich melts that form control the rate of volatile outflux from the Earth’s interior, contributing to climate evolution over geological times. However, attempts to constrain the carbon concentrations of the mantle source beneath oceanic islands and continental rifts is complicated by pre-eruptive volatile loss from magmas. Here, we compile literature data on magmatic gases, as a surface expression of the pre-eruptive volatile loss, from 12 oceanic island and continental rift volcanoes. We find that the levels of carbon enrichment in magmatic gases cor…

PeridotitegeographyRiftgeography.geographical_feature_categoryCarbon mantle geochemistryGeochemistrychemistry.chemical_elementSilicateMantle (geology)NOVolcanic rockchemistry.chemical_compoundPlate tectonicschemistryVolcanoGeneral Earth and Planetary Sciencesmantle geochemistryCarbonGeologyNature Geoscience
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Recycling plus: A new recipe for the formation of Alpine-Himalayan orogenic mantle lithosphere

2013

Abstract The origin of the lithospheric mantle beneath accretionary orogens is enigmatic; although severe compression of the buoyant crust occurs, the mantle lithosphere is generally thought to be removed and returned to the convecting mantle. We suggest that during the accretion of oceanic arcs and small continental blocks in the Mediterranean region, and more generally throughout the whole Alpine–Himalayan orogenic belt, the mantle lithosphere is newly created and composed of intimately mixed peridotite and crustal material from the forearc region. Potassium-rich volcanic rocks emplaced sometimes more than 30 Ma after the formation of this lithosphere carry evidence for the presence of ex…

Peridotitegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesCrustal recyclingContinental crustGeochemistry010502 geochemistry & geophysicsCollision zone01 natural sciencesObductionThermal subsidenceCratonGeophysics13. Climate actionSpace and Planetary ScienceGeochemistry and PetrologyTransition zoneEarth and Planetary Sciences (miscellaneous)Geology0105 earth and related environmental sciences
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Nature and origin of eclogite xenoliths from kimberlites

2004

Abstract Eclogites from the Earth's mantle found in kimberlites provide important information on craton formation and ancient geodynamic processes because such eclogites are mostly Archean in age. They have equilibrated over a range of temperatures and pressures throughout the subcratonic mantle and some are diamond-bearing. Most mantle eclogites are bimineralic (omphacite and garnet) rarely with accessory rutiles. Contrary to their overall mineralogical simplicity, their broadly basaltic-picritic bulk compositions cover a large range and overlap with (but are not identical to) much younger lower grade eclogites from orogenic massifs. The majority of mantle eclogites have trace element geoc…

Peridotitegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesGeochemistryGeology010502 geochemistry & geophysics01 natural sciencesMantle (geology)Sierra leoneCraton13. Climate actionGeochemistry and PetrologyOceanic crustXenolithEclogiteKimberliteGeology0105 earth and related environmental sciences
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Between carbonatite and lamproite - Diamondiferous Torngat ultramafic lamprophyres formed by carbonate-fluxed melting of cratonic MARID-type metasomes

2008

Abstract New U–Pb perovskite ages reveal that diamondiferous ultramafic lamprophyre magmas erupted through the Archean crust of northern Labrador and Quebec (eastern Canada) between ca. 610 and 565 Ma, a period of strong rifting activity throughout contiguous Laurentia and Baltica. The observed Torngat carbonate-rich aillikite/carbonatite and carbonate-poor mela-aillikite dyke varieties show a large spread in Sr–Nd–Hf–Pb isotope ratios with pronounced correlations between isotope systems. An isotopically depleted component is identified solely within aillikites (87Sr/86Sri = 0.70323–0.70377; eNdi = +1.2–+1.8; eHfi = +1.4–+3.5; 206Pb/204Pbi = 18.2–18.5), whereas some aillikites and all mela-…

Peridotitegeographygeography.geographical_feature_categoryGeochemistry550 - Earth sciencesCratonGeochemistry and PetrologyLithosphereUltramafic rockCarbonatiteXenolithMetasomatismKimberliteGeology
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Highly siderophile elements (PGE, Re and Au) in mantle xenoliths from the West Eifel volcanic field (Germany)

2003

Abstract Mantle peridotite xenoliths ranging in modal composition between fertile lherzolites and modally metasomatized harzburgites, and magmatic pyroxenite xenoliths from the West Eifel and Vogelsberg volcanic fields (Germany) have been analyzed for their whole rock major and minor elements, six platinum-group elements PGE (PGE: Os, Ir, Pt, Ru, Rh, Pd), Re and Au, rare earth elements (REE), and several other trace elements (e.g., As, Ta). The bulk rock Ir concentrations range from 0.23 to 9.07 ng/g (total PGE contents range between 43.2 ng/g), exceeding the range previously found in mantle rocks. Two pyroxenite samples show large variabilities in their PGE concentrations, with Ir contents…

Peridotitegeographygeography.geographical_feature_categoryGeochemistryGeologyMantle (geology)Mantle xenolithsModal compositionVolcanoGeochemistry and PetrologyXenolithLithophileMetasomatismGeologyChemical Geology
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Geodynamic Setting of the Tertiary Hocheifel Volcanism (Germany), Part II: Geochemistry and Sr, Nd and Pb Isotopic Compositions.

2007

Major and trace element as well as isotopic compositions on 26 volcanic rocks from the Tertiary Hocheifel volcanic field and for comparison from Upper Rhine Graben occurrences (western Central European Volcanic Province) were measured in order to provide geochemical evidence for the geodynamic setting of the Tertiary Eifel volcanism. Except for a few differentiated lavas there are mainly basanitic compositions. These rocks were produced by low degree partial melting of a previously metasomatized garnet peridotite source at pressures and temperatures corresponding to depths of about 75 to 90 km. In contrast to the differentiated lavas, most of the basanites are not significantly affected by …

Peridotitegeographygeography.geographical_feature_categoryPartial meltingGeochemistryMantle plumeMantle (geology)Volcanic rockGrabenVolcano[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryGeochronology[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyPetrologyGeologyComputingMilieux_MISCELLANEOUS
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Proterozoic melting in the northern peridotite Massif, Zabargad Island: Os isotopic evidence

1999

The geodynamic history of the three Zabargad peridotite bodies is the key to their significance as samples of the upper mantle. Currently, there are two main hypotheses that differ greatly in their implications for the origin and age of the peridotite complex as a whole. In the first, the Zabargad peridotite bodies all represent young asthenospheric mantle that was juxtaposed with ancient crustal gneisses during the opening of the Red Sea. In the second, the complex may represent a single package of residual mantle and lower crust of Pan-African age that was uplifted during the Miocene. In order to distinguish between these two models, we have analysed five samples of Zabargad peridotite an…

Peridotitegeographygeography.geographical_feature_categoryProterozoicTransition zoneGeochemistryGeologyCrustMassifLithospheric mantleGeologyMantle (geology)GneissTerra Nova
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Petrogenesis of strongly alkaline primitive volcanic rocks at the propagating tip of the western branch of the East African Rift

2009

Abstract Strongly silica-undersaturated potassic lavas (kamafugites) and carbonatitic tuffs are characteristic of the Toro-Ankole volcanic field in southwestern Uganda, forming the youngest and most northward volcanics of the western branch of the East African Rift. Lavas contain exceptionally low SiO2 (31.8–42.8 wt.%), high CaO (up to 16.6 wt.%) and K2O (up to 7 wt.%). They exhibit moderately enriched correlated Nd (eNd − 0.1 to − 4.7) and Hf (eHf − 0.1 to − 8.8) isotope signatures, indicating time-integrated enrichment in incompatible elements in the source, attributed to mixing between two metasomatic assemblages, a phlogopite-rich MARID-type and a later carbonate-rich assemblage. The re…

Peridotitegeographygeography.geographical_feature_categoryRiftGeochemistryMantle (geology)Volcanic rockCratonGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyUltramafic rockEast African RiftEarth and Planetary Sciences (miscellaneous)GeologyPetrogenesisEarth and Planetary Science Letters
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Highly siderophile element geochemistry of the Earth's mantle: new data for the Lanzo (Italy) and Ronda (Spain) orogenic peridotite bodies

2000

Abstract Nine plagioclase/spinel lherzolites from the Lanzo (Italy) and Ronda (Spain) peridotite bodies were analysed for Re, Os, Ir, Ru, Rh, Pd, and Au using a high-precision instrumental neutron activation (INA) procedure after NiS fire assay. Our data conform with previous observations that orogenic lherzolite massifs sampled domains of the subcontinental lithospheric mantle (SCLM) displaying a characteristic enrichment of Ru, Rh and Pd (i.e. the light platinum group elements; PGEs) over Os and Ir. The Pd/Ir, Rh/Ir and Ru/Ir ratios are superchondritic and very similar in both suites (2.46±0.32 vs. 2.42±0.21; 0.46±0.07 vs. 0.45±0.10; 1.99±0.14 vs. 2.25±0.25, respectively). Rhenium and gol…

Peridotitegeographygeography.geographical_feature_categorySpinelGeochemistryGeologyMassifengineering.materialPlatinum groupMantle (geology)Geochemistry and PetrologyChondriteLithosphereengineeringPlagioclaseGeologyLithos
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