Search results for "rock"

showing 10 items of 1160 documents

Geodynamic significance of ultramafic xenoliths from Eastern Serbia: Relics of sub-arc oceanic mantle?

2007

A suite of highly depleted peridotite xenoliths in East Serbian Palaeogene basanites represents the lithospheric mantle beneath the Balkan Peninsula. The xenoliths are harzburgites, clinopyroxene-poor lherzolites and rare dunites. They contain mostly 91), high Cr# in spinel (mostly 0.5–0.7), and by distinctively low Al2O3 contents in orthopyroxene (mostly 1–2 wt.%). They have experienced some mantle metasomatism which has slightly obscured their original composition. Nevertheless, the general characteristics of the xenoliths imply a composition which is significantly more depleted than most non-cratonic sub-continental mantle xenolith suites, as well as orogenic peridotites and abyssal peri…

PeridotiteUnderplating010504 meteorology & atmospheric sciencesProterozoicArcheanGeochemistry010502 geochemistry & geophysics01 natural sciencesMantle (geology)Geophysics13. Climate actionLithosphereUltramafic rockXenolithGeology0105 earth and related environmental sciencesEarth-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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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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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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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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A Reappraisal of Redox Melting in the Earth’s Mantle as a Function of Tectonic Setting and Time

2010

Redox melting refers to any process by which melt is generated by the contact of a rock with a fluid or melt with a contrasting oxidation state. It was originally applied to melting owing to the oxidation of reduced CH4and H2-bearing fluids in contact with more oxidized blocks in the mantle, particularly recycled crustal blocks.This oxidation mechanism causes an increase in the activity of H2O by the reaction of CH4 with O2, and the increased aH2O causes a rapid drop in the solidus temperature, and is here termed hydrous redox melting (HRM). Recently, a second redox melting mechanism (carbonate redox melting; CRM) has been discovered that operates in more oxidized conditions, and may post-d…

Peridotitegeographygeography.geographical_feature_categorySubductionEarth scienceGeochemistryMantle (geology)CratonIgneous rockGeophysicsGeochemistry and PetrologyAsthenosphereLithosphereMineral redox bufferGeologyJournal of Petrology
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Two-Stage Origin of K-Enrichment in Ultrapotassic Magmatism Simulated by Melting of Experimentally Metasomatized Mantle

2019

The generation of strongly potassic melts in the mantle requires the presence of phlogopite in the melting assemblage, while isotopic and trace element analyses of ultrapotassic rocks frequently indicate the involvement of subducted crustal lithologies in the source. However, phlogopite-free experiments that focus on melting of sedimentary rocks and subsequent hybridization with mantle rocks at pressures of 1&ndash

Peridotitelcsh:Mineralogylcsh:QE351-399.2lamproites010504 meteorology & atmospheric sciencesLithologyultrapotassicTrace elementGeochemistryGeologyUltrapotassic igneous rocksengineering.material010502 geochemistry & geophysicsGeotechnical Engineering and Engineering Geology01 natural sciencesK-enrichmentMantle (geology)MagmatismengineeringPhlogopiteSedimentary rockhigh-pressure experimentssubduction zonesGeology0105 earth and related environmental sciencesMinerals
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Stable Isotope Transport and Contact Metamorphic Fluid Flow

2001

Stable isotopes are a powerful tool for deciphering the fluid histories of metamorphic terranes. The nature of fluid flow, fluid sources, and fluid fluxes can be delineated in well-constrained studies. Observed isotopic gradients in metamorphic rocks and minerals can thus shed light on many processes involved in mass-transport including diffusion, recrystallization, fluid infiltration, volatilization, metasomatism, and heat flow. Modeling of fluid flow and mineral exchange kinetics offers greatly enhanced understanding of metamorphic processes that can be tested and refined by application of new micro-analytical techniques. This review will concentrate on the principles of stable isotope fl…

Permeability (earth sciences)Geochemistry and PetrologyLithologyStable isotope ratioMetamorphic rockFluid dynamicsGeochemistryMetamorphismMetasomatismShear zoneGeologyReviews in Mineralogy and Geochemistry
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Determination of the Porosity, Permeability and Diffusivity of Rock in the Excavation-Disturbed Zone Around Full-Scale Deposition Holes Using the He-…

1999

AbstractIn a nuclear waste repository, rock in the excavation-disturbed zone adjacent to the walls of deposition holes for waste canisters is a potential pathway for the transport of corrosive agents and radionuclides. Three experimental holes the size of deposition holes in a KBS-3 type repository (depth 7.5 m and diameter 1.5 m) were bored in hard granitic rock in the Research Tunnel at Olkiluoto and the porosities, effective diffusivities and permeabilities of rock in the excavation-disturbed zone were determined in a direction parallel to the disturbed surface using He-gas methods. Permeability and diffusivity in a direction parallel to the rock schistosity was found to be clearly large…

Permeability (earth sciences)Materials scienceGranitic rockPerpendicularFull scaleRadioactive wasteMineralogyExcavationPorosityThermal diffusivityMRS Proceedings
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Petrogenesis of tourmaline rocks associated with Fe-carbonate-graphite metapelite, metabasite and strata-bound polymetallic sulphide mineralisation, …

2007

Abstract Tourmalinite and tourmaline-rich rocks associated with Fe-carbonate–graphite phyllite, strata-bound polymetallic sulphide deposits, metabasite and marble were studied, for information on the mechanism of tourmaline formation in the pre-Hercynian low-grade metamorphic sequence of the Mandanici Unit in the Peloritani Mountains of Sicily, southern Italy. The major and trace element compositions of the tourmaline rocks suggest the existence of a sedimentary protolith with pre-metamorphic black shale and bedded chert. Boron was interpreted to be accumulated in a restricted sedimentary basin, between platform carbonate formations, with abundant organic matter and Fe–Al–Ti-rich laterite–b…

PetrographyTourmalineGeochemistry and PetrologyClastic rockMetamorphic rockGeochemistryMetamorphismGeologySedimentary rockPetrologyProtolithGeologyPetrogenesis
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