0000000000387620

AUTHOR

Marina Veter

0000-0001-6008-3141

showing 3 related works from this author

Trace elements in olivine of ultramafic lamprophyres controlled by phlogopite-rich mineral assemblages in the mantle source

2017

Abstract Carbonate-rich ultramafic lamprophyres (aillikites) and associated rocks characteristically occur during the early stages of thinning and rifting of cratonic mantle lithosphere, prior to the eruption of melilitites, nephelinites and alkali basalts. It is accepted that they require volatile-rich melting conditions, and the presence of phlogopite and carbonate in the source, but the exact source rock assemblages are debated. Melts similar to carbonate-rich ultramafic lamprophyres (aillikites) have been produced by melting of peridotites in the presence of CO2 and H2O, whereas isotopes and trace elements appear to favor distinct phlogopite-bearing rocks. Olivine macrocrysts in ailliki…

BasaltOlivine010504 meteorology & atmospheric sciencesGeochemistryGeologyPyroxeneengineering.material010502 geochemistry & geophysics01 natural sciencesMantle (geology)Geochemistry and PetrologyUltramafic rockengineeringPhenocrystPhlogopiteKimberliteGeology0105 earth and related environmental sciencesLithos
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Nano‐Powdered Calcium Carbonate Reference Materials: Significant Progress for Microanalysis?

2019

chemistry.chemical_compoundCalcium carbonateMaterials sciencechemistryGeochemistry and PetrologyLaser ablation inductively coupled plasma mass spectrometryHomogeneity (statistics)Nano-CarbonateGeologyMicroanalysisNuclear chemistryGeostandards and Geoanalytical Research
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Melting and dynamic metasomatism of mixed harzburgite + glimmerite mantle source: Implications for the genesis of orogenic potassic magmas

2017

Abstract Tectonically young, orogenic settings are commonly the sites of post-collisional silica-rich ultrapotassic magmas with extreme K2O-contents of up to 9 wt% and K2O/Na2O > 2. Many experimental studies investigating the generation of these melts have concentrated on melting of homogenous phlogopite bearing peridotites, whereas geochemical signatures indicate the involvement of at least two types of source rocks: ultra-depleted and K and trace elements-enriched ones. We report the results of melting experiments at 1–2 GPa of mixed glimmerite and harzburgite, in which these rock types make up two halves each capsule. Melting begins in the glimmerite, and its metasomatic effects on the h…

Olivine010504 meteorology & atmospheric sciencesGeochemistryGeologyengineering.material010502 geochemistry & geophysics01 natural sciencesMantle (geology)Source rockGeochemistry and PetrologyengineeringRock typesPhlogopiteMetasomatismGeology0105 earth and related environmental sciencesChemical Geology
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