Search results for "Peridotite"

showing 8 items of 48 documents

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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The fate of subducted oceanic slabs in the shallow mantle: Insights from boron isotopes and light element composition of metasomatized blueschists fr…

2012

Abstract Serpentine muds from South Chamorro Seamount (SCS), drilled during ODP Leg 195 at Site 1200 contain metamafic clasts that experienced blueschist-facies metamorphism (including the critical mineral assemblage pumpellyite – Na-amphibole – epidote). These schists represent fragments from the actual slab–mantle interface at ~ 27 km depth. Their heterogeneous lithology with a metasomatic character indicates significant mobility of major elements in the Mariana forearc, a region of melange formation as it can also be observed in onland exposures such as the Catalina Schist. As the Mariana forearc blueschists show no late stage alteration they permit the direct study of material transfer …

Peridotitegeographygeography.geographical_feature_categoryblueschistMantle wedgeVolcanic arcGeochemistryGeologyIzu-Bonin-Marianas subductionPhengiteboron isotopesIsotope fractionationGeochemistry and PetrologyMetasomatismForearcSIMSAmphiboleGeology
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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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Eclogites and garnet pyroxenites: Similarities and differences

2010

Eclogites and garnet pyroxenites are genetically linked to basaltic precursors. Traditionally garnet pyroxenites are linked to fractionation of basaltic Magmas Over a range of mantle pressures and more recently they have been implicated in the genesis of ocean islands. in contrast eclogites are linked to the subduction of slab basalt and gabbro precursors which may be hydrothermally altered. Recently this subduction paradigm has been questioned. We present mineralogical, trace element and O isotopic data for eclogites and garnet pyroxenites that reveal some similarities but also important chemical and isotopic differences that support a distinct provenance (i.e., age and process). Continent…

SALT-LAKE-CRATERSM-NDGeochemistryResearch Groups and Centres\Earth Sciences\Ancient and Modern Earth SystemsXENOLITHIC ECLOGITESMantle (geology)ONTONG JAVA PLATEAUxenolithsResearch Groups and Centres\Earth Sciences\GeochemistryGeochemistry and PetrologyTRACE-ELEMENTSFaculty of Science\Earth SciencesXenolithHIGH-PRECISIONgarnet pyroxenitesLU-HFWEST-AFRICAPeridotiteBasaltgeographygeography.geographical_feature_categorySOLOMON-ISLANDSGabbrooxygen isotopesmantle eclogitesmineral chemistryCratonIgneous rockGeophysicsEclogiteGeologyKAAPVAAL CRATONJournal of Volcanology and Geothermal Research
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New evidence of mantle heterogeneity beneath the Hyblean Plateau (southeast Sicily, Italy) as inferred from noble gases and geochemistry of ultramafi…

2012

Abstract We analyzed major and trace elements, Sr and Nd isotopes in ultramafic xenoliths in Miocenic age Hyblean diatremes, along with noble gases of CO2-rich fluid inclusions hosted in the same products. The xenoliths consist of peridotites and pyroxenites, which are considered to be derived from the upper mantle. Although the mineral assemblage of peridotites and their whole-rock abundance of major elements (e.g., Al2O3 = 0.8–1.5 wt.%, TiO2 = 0.03–0.08 wt.%) suggest a residual character of the mantle, a moderate enrichment in some incompatible elements (e.g., LaN/YbN = 9–14) highlights the presence of cryptic metasomatic events. In this context a deep silicate liquid is considered the me…

XenolithsPeridotiteIncompatible elementHyblean PlateauGeochemistryGeologyFluid inclusionMantle (geology)Noble gaMetasomatismGeochemistry and PetrologyUltramafic rockNoble GasXenolithXenolithFluid inclusionsMantleMetasomatismMaficXenoliths; Mantle; Noble GasGeologyLithos
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Melting of sediments in the deep mantle produces saline fluid inclusions in diamonds.

2019

We demonstrate the formation of highly saline mantle fluids by the reaction of subducted sediment with peridotite.

[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and Prehistory010504 meteorology & atmospheric scienceseducationGeochemistry[SDU.STU]Sciences of the Universe [physics]/Earth Sciencesengineering.material010502 geochemistry & geophysics01 natural sciencesMantle (geology)[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryLithosphereFluid inclusionsResearch Articles0105 earth and related environmental sciencesPeridotiteMultidisciplinarySubductionDiamondSciAdv r-articlesGeologyGeochemistry13. Climate action[SDE]Environmental SciencesengineeringMicaKimberliteGeologyResearch ArticleScience advances
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Ca-rich carbonates associated with ultrabasic-ultramafic melts. Carbonatite or limestone xenoliths? A case study from the late Miocene Morron de Vill…

2016

The volcanic products of the late Miocene Morron de Villamayor volcano (Calatrava Volcanic Field, central Spain) are known for being one of the few outcrops of leucitites in the entire circum-Mediterranean area. These rocks are important because aragonite of mantle origin has been reported as inclusion in olivine macrocrysts. We use petrographic observations, mineral compositions, as well as oxygen and carbon isotope ratios coupled with experimental petrology to understand the origin of carbonate phase in these olivine-phyric rocks. Groundmass and macrocryst olivines range from δ18OVSMOW of +4.8‰, typical of mantle olivine values, to +7.4‰, indicating contamination by sedimentary carbonate.…

alkali basalts010504 meteorology & atmospheric sciencesGeochemistrySkarnMediterraneanengineering.material010502 geochemistry & geophysics01 natural sciencespetrologygeochemistry; petrology; carbonate; carbonatite; olivine; mantle; alkaline; Spain; Cenozoic; MagmatismPetrographychemistry.chemical_compoundcarbonateGeochemistry and PetrologyUltramafic rockolivineNeogene volcanism0105 earth and related environmental sciencesgeochemistryPeridotiteOlivineCenozoicAragoniteMagmatismcarbonatitechemistry13. Climate actionSpainCarbonatiteengineeringCarbonatealkalineGeologymantle
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Os, Sr, Nd, Pb, O isotope and trace element data from the Ferrar flood basalts, antarctica: evidence for an enriched subcontinental lithospheric sour…

1996

Os, Sr, Nd, Pb and O isotopes and trace element data are reported for basaltic andesite and andesite whole rocks and, in part, for selected mineral separates from the Jurassic Ferrar flood basalt province. Radiogenic Sr (> 0.709), unradiogenic Nd (εNd= −3 to −5), and radiogenic Pb isotopes, as well as low Nb/La ratios of 0.4 – 0.6 and Nb/La ratios between 0.45 and 0.6 are found for all rocks including our most primitive sample (Mg# = 71.9). This indicates involvement of either continental crust or enriched lithospheric mantle in magma genesis. 187Re/188Os correlates strongly with 187Os/188Os, with an age of 172 ± 5 Ma, in agreement with published Arsingle bondAr data. Initial 187Os/188Os of…

flood basalts010504 meteorology & atmospheric sciencesGeochemistryFerrar Group551010502 geochemistry & geophysics01 natural sciencesMantle (geology)magma contaminationBasaltic andesite[SDU.STU.PL]Sciences of the Universe [physics]/Earth Sciences/PlanetologyGeochemistry and Petrology[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryEarth and Planetary Sciences (miscellaneous)[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/Volcanology0105 earth and related environmental sciencesgeochemistryPeridotiteBasaltAndesiteContinental crustTrace elementGeophysics13. Climate actionSpace and Planetary ScienceFlood basaltFerrar Group; flood basalts; magma contamination; geochemistryGeology
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