Search results for "Petrografia"

showing 10 items of 92 documents

Geochemical constraints on basalt petrogenesis in the Strait of Sicily Rift Zone (Italy): Insights into the importance of short lengthscale mantle he…

2020

Igneous activity from the late Miocene to historic time (most recently 1891 CE) in the Strait of Sicily has created two volcanic islands (Pantelleria and Linosa) and several seamounts. These volcanoes are dominated by transitional (ol + hy-normative) to alkaline (ne-normative) basaltic lavas and scoriae; volcanic felsic rocks (peralkaline trachyte-rhyolite) crop out only on Pantelleria. Although most likely erupted through continental crust, basalts demonstrate no evidence of crustal contamination and are geochemically similar to oceanic island basalts (OIB). Despite their isotopic similarities, there are considerable compositional differences with respect to major and trace element geochem…

BasaltContinental-OIBStrait of Sicily Rift ZoneFelsicAlkali Basalt010504 meteorology & atmospheric sciencesContinental crustAlkali basaltKeywords: Strait of Sicily Rift Zone Continental-OIB Alkali basalt Mantle melting Mantle heterogeneitySettore GEO/07 - Petrologia E PetrografiaPartial meltingGeochemistryGeologyCrust010502 geochemistry & geophysics01 natural sciencesMantle (geology)Geochemistry and PetrologyAsthenosphereMantle HeterogeneityMantle MeltingGeology0105 earth and related environmental sciencesChemical Geology
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Petrology and geochemistry of submarine volcanism in the Sicily Channel Rift

2006

Submarine magmatism in the Sicily Channel Rift began in the early Pliocene and lasted until almost 200 yr ago. We present here petrological and geochemical data on volcanic rocks dredged from Graham and Nameless banks and Pantelleria seamounts in the Pelagian sector of the Sicily Channel Rift. Petrological evidence suggests that the ascent of magmas to the surface was relatively rapid, probably through channels superimposed over the major tectonic discontinuities of the Rift. Major and trace element data indicate an ocean island basalt affinity for Graham and Nameless bank alkaline lavas and a depleted tholeiitic signature for one Pantelleria seamount, which had a shallower mantle source. S…

BasaltgeographyRiftgeography.geographical_feature_categoryRadiogenic nuclideSiciy Channel PAntelelriaSeamountSettore GEO/07 - Petrologia E PetrografiaGeochemistryGeologyOcean island basaltsicily channel riftMantle (geology)sr‐nd‐pb isotopesVolcanic rockMagmatismsicily channel rift; sr‐nd‐pb isotopes; submarine volcanismPetrologysubmarine volcanismGeology
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New Insights into the Provenance of the Obsidian Fragments of the Island of Ustica (Palermo, Sicily)

2017

In this study we applied a multidisciplinary approach, coupling geophysical and geochemical measurements, to unveil the provenance of 170 obsidian flakes, collected on the volcanic island of Ustica (Sicily). On this island there are some prehistoric settlements dated from the Neolithic to the Middle Bronze Age. Despite not having geological outcrops of obsidian rocks, the countryside of Ustica is rich in fragments of this volcanic glass, imported from other source areas. The study of obsidian findings was carried out first through visual observations and density measurements. At least two different obsidian families have been distinguished, probably imported from Lipari and Pantelleria isla…

Bronze AgeObsidianGeochemical and Physical AnalyseHistoryArcheologyPeri-Tyrrhenian AreaProvenance StudieSettore GEO/07 - Petrologia E PetrografiaNeolithicUstica IslandSettore GEO/09 -Georis. Miner.e Appl.Mineral.-Petrogr. per l'Ambi.ed i B.Cult.
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Obsidians of Pantelleria (Strait of Sicily): A Petrographic, Geochemical and Magnetic Study of Known and New Geological Sources

2020

Abstract This paper provides new petrochemical and paleomagnetic data from obsidian sub-sources on the island of Pantelleria, exploited since the Neolithic. Data has been obtained from 14 obsidian samples from 4 locations: Fossa della Pernice (2 sites), Salto la Vecchia and Balata dei Turchi. Here, we aim to better characterize these obsidians using a cross-disciplinary and multi-analytical approach, to further understand their archaeological significance. Major element analyses (EMP) have enabled two compositional super-groups to be distinguished: (i) Fossa della Pernice, less peralkaline and (ii) Balata dei Turchi–Salto la Vecchia, distinctly more peralkaline and having almost identical c…

Bronze ageObsidianArcheology060102 archaeologyGeochemistrySettore GEO/07 - Petrologia E Petrografia06 humanities and the artsConservation010502 geochemistry & geophysics01 natural sciencesLipariEducationPetrographyArchaeologyUstica0601 history and archaeologyMagnetic studyGeologyCC1-960Pantelleria0105 earth and related environmental sciences
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Shrinkage Bubbles: The C–O–H–S Magmatic Fluid System at San Cristóbal Volcano

2018

New analytical results for the composition of shrinkage bubbles (09-70 vol. %) in olivine-hosted (Fo <80%) primary melt inclusions (MIs) have been incorporated into a novel geochemical model for San Cristó bal volcano, Nicaragua. The vapour, liquid, and mineral components found inside shrinkage bubbles may represent relics of early C-O-H-S fluids exsolved from a magmatichydrothermal system. This conclusion is supported by high-resolution Raman microspectroscopy revealing: (1) gaseous CO2 (d=0·17-0·31 g/cm3 in 31 samples) coexisting with liquid H2O (in seven samples) at ambient temperature (<22°C) inside the shrinkage bubbles of naturally quenched inclusions; (2) several mineral phases (i.e.…

CO2 H2O SO2 mgmatic degassing melt inclusionsgeographyGEO/07 - PETROLOGIA E PETROGRAFIAMelt inclusiongeography.geographical_feature_category010504 meteorology & atmospheric sciencesSan CristóbalFluid system010502 geochemistry & geophysics01 natural sciencesGeophysicsVolcanoGeochemistry and PetrologyGEO/08 - GEOCHIMICA E VULCANOLOGIARaman spectroscopyShrinkage bubblePetrologyGeophysicCopperGeology0105 earth and related environmental sciencesShrinkageJournal of Petrology
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Carbonate deposition and diagenesis in evaporitic environments: The evaporative and sulphur-bearing limestones during the settlement of the Messinian…

2015

The depositional and diagenetic processes involved in the formation of carbonates in the evaporitic environment of the Messinian Salinity Crisis are investigated in Southern Italy (Sicily and Calabria). Strong differences are observed between the studied sections that reflect specific depositional and diagenetic evolution in the interconnected sub-basins resulting from the syn-sedimentary tectonic fragmentation of the Central Sicilian and Calabrian domains. These carbonates formed diachronously in restricted perched sub-basins between the Tripoli Formation and the hypersaline settings of the MSC. The Calcare di Base (CdB) that can be interbedded with gypsum layers occurs rhythmically at the…

Calcare di BaseGypsumBacterial sulphate reductionSettore GEO/02 - Geologia Stratigrafica E Sedimentologica010504 meteorology & atmospheric sciencesEvaporiteGeochemistryDiagenetic carbonateSulphur LimestoneMineralogy[PHYS.PHYS.PHYS-GEO-PH]Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph]engineering.material010502 geochemistry & geophysicsOceanography01 natural scienceschemistry.chemical_compoundCelestineMessinian Salinity Crisis Carbonate SulphurEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesEarth-Surface ProcessesCalciteAnhydriteSettore GEO/07 - Petrologia E PetrografiaMessinian Salinity CrisiPaleontologySettore GEO/01 - Paleontologia E PaleoecologiaSettore GEO/08 - Geochimica E VulcanologiaDiagenesisEvaporitechemistryengineeringHaliteCarbonateGeology
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Le comportement du soufre et les conditions d'oxydoréduction dans les basaltes hydratés de l'Etna inférés par des inclusions vitreuses et des verres …

2017

Sulfur is an important volatile component of magmas that presents different oxidation states, depending on the redox conditions and on the phase of occurrence: in silicate melts it is typically dissolved as S⁶⁺ and/or S²⁻ , in the gas phase it occurs principally as SO₂ (S⁴⁺ ) and H₂S (S²⁻). Mount Etna, in which magmatic redox conditions are poorly constrained, is used as a case study to investigate sulfur behavior in hydrous basaltic magmas during magma differentiation and degassing. This research integrates the study of natural olivine-hosted melt inclusions with an experimental study on S solubility in hydrous alkali basalts at magmatic conditions.Experimental results suggest the importan…

ExpériencesInclusions vitreuses silicatiquesSoufreSettore GEO/07 - Petrologia E Petrografia[SDU.STU]Sciences of the Universe [physics]/Earth Sciencesoxygen fugacitysilicate melt inclusionsexperimentsXANES Fe3+/ΣFe ratiosulfur silicate melt inclusions experiments XANES Fe3+/ΣFe ratio oxygen fugacityXANES Fe³⁺/ΣFe ratioSilicate melt inclusionssulfurFugacité d'oxygèneExperimentsSulfurOxygen fugacity
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RELATIONSHIPS BETWEEN MAFIC AND FELSIC MAGMATISM AT PANTELLERIA: A PETROLOGICAL STUDY ON INTERMEDIATE TRACHYTE MAGMAS

2011

FELSICPANTELLERIASettore GEO/07 - Petrologia E PetrografiaPETROLOGICALMAFICMAGMATISMTRACHYTE MAGMAS
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Mafic and ultra-mafic enclaves from Ustica island lava: inferences on deep magmatic processes

2005

Ustica Island, southern Tyrrhenian Sea, is constituted of Quaternary alkaline volcanics. Avariety of enclaves representative of deep to supra-crustal settings were recently found in a hawaiitic lava flow. Enclaves consist of: (i) Ultramafic meta-cumulates, i.e. clinopyroxenites and wherlites characterized by variably deformed porphyroclastic to granoblastic textures. (ii) Mafic cumulates, i.e. gabbros (F amphibole) and troctolites, the first often characterized by frequent amphibole breakdown coronas (olivine+Tiaugite+ plagioclase+magnetite+ilmenite+rhfnite) in response to an H2O decrease during the ascent, while the troctolites interpreted as meta-cumulates. (iii) Microsyenites, consist of…

FassaiteUsticaAscent rateSettore GEO/07 - Petrologia E PetrografiaAmphiboleRhfniteLower crustEnclave
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Volatiles and trace elements content in melt inclusions from the zoned Green Tuff ignimbrite (Pantelleria, Sicily): petrological inferences

2018

International audience; The island of Pantelleria is one of the best known localities of bimodal mafic-felsic magmatism (alkali basalt and trachyte-pantellerite). Among the felsic rocks, the coexistence in a single eruption of products of both trachyte and pantellerite compositions is limited to few occurrences, the Green Tuff (GT) ignimbrite being one of these. The GT is compositionally zoned from pantellerite (70.1 wt% SiO2, mol Na+K/Al = 1.86, 1871 ppm Zr) at the base to crystal-rich (>30 vol%) comenditic trachyte (63.4 wt% SiO2, mol Na+K/Al = 1.10, 265 ppm Zr) at the top, although the pantellertic compositions dominate the erupted volume. We present here new data on melt inclusions (MIs…

FelsicMelt inclusion010504 meteorology & atmospheric sciencesAlkali basaltGeochemistrySettore GEO/07 - Petrologia E PetrografiaTrachyteSilicic[SDU.STU]Sciences of the Universe [physics]/Earth SciencesMagma chamberZoned ignimbrite010502 geochemistry & geophysics01 natural sciencesPeralkaline rockTrachyteGeophysics13. Climate action[SDU]Sciences of the Universe [physics]MagmaPeralkaline rhyoliteGeologyPantelleria0105 earth and related environmental sciencesMelt inclusions
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