Search results for "Magma"

showing 10 items of 262 documents

Plume chemistry provides insights into mechanisms of sulfur and halogen degassing in basaltic volcanoes

2004

Abstract This paper deals with sulfur, chlorine and fluorine abundances in the eruptive volcanic plume of the huge October 2002–January 2003 eruption of Mount Etna, aiming at relating the relevant compositional variations observed throughout with changes in eruption dynamics and degassing mechanisms. The recurrent sampling of plume acidic volatiles by filter-pack methodology revealed that, during the study period, S/Cl and Cl/F ratios ranged from 0.1–6.8 and 0.9–5.6, respectively. Plume S/Cl ratios increased by a factor of ∼10 as volcanic activity drifted from paroxysmal lava fountaining (mid- and late November) to passive degassing and minor effusion (early January), and then decreased to …

Basaltgeographygeography.geographical_feature_categoryLavaGeochemistrychemistry.chemical_elementSulfurPlumeGeophysicschemistryVolcanoSpace and Planetary ScienceGeochemistry and PetrologyHalogenMagmaEarth and Planetary Sciences (miscellaneous)ChlorineGeologyEarth and Planetary Science Letters
researchProduct

Geochemical evolution of rift magmas by progressive tapping of a stratified mantle source beneath the Ross Sea Rift, Northern Victoria Land, Antarcti…

1995

Abstract Source compositions of Neogene-Quaternary volcanic rocks from the McMurdo Volcanic Group of the Ross Sea Rift in Northern Victoria Land, Antarctica are constrained by NdSrPb isotopes and trace element ratios in near-primary basalts. The rocks erupted along the western rift margin (Victoria Land Basin) and the western rift shoulder (Transantarctic Mountains). Near-primary basalts show no evidence of crustal contamination, suggesting that their initial NdSrPb isotopes reflect the composition of their mantle sources. The initial isotope ratios of near-primary basalts range from about 87 Sr 86 Sr = 0.70281 to 0.70504 and 143 Nd 144 Nd = 0.51269 to 0.51291 (ϵNd(t) = 1.3–5.5). The 20…

Basaltgeographygeography.geographical_feature_categoryRiftGeochemistryMantle (geology)Mantle plumeVolcanic rockGeophysicsVolcanoSpace and Planetary ScienceGeochemistry and PetrologyLithosphereMagmatismEarth and Planetary Sciences (miscellaneous)Geology
researchProduct

Rapid onset of mafic magmatism facilitated by volcanic edifice collapse: MAFIC MAGMATISM FACILITATED BY VOLCANIC EDIFICE COLLAPSE

2015

Volcanic edifice collapses generate some of Earth's largest landslides. How such unloading affects the magma storage systems is important for both hazard assessment and for determining long-term controls on volcano growth and decay. Here we present a detailed stratigraphic and petrological analyses of volcanic landslide and eruption deposits offshore Montserrat, in a subduction zone setting, sampled during Integrated Ocean Drilling Program Expedition 340. A large (6–10 km3) collapse of the Soufriere Hills Volcano at ~130 ka was followed by explosive basaltic volcanism and the formation of a new basaltic volcanic center, the South Soufriere Hills, estimated to have initiated <100 years after…

Basaltgeographygeography.geographical_feature_categorySubductionAndesiteEarth scienceGeochemistryCrustsub-05VolcanismGeophysicsVolcano13. Climate actionMagmatismMagmaGeneral Earth and Planetary SciencesGeology
researchProduct

Crater Gas Emissions and the Magma Feeding System of Stromboli Volcano

2013

Quiescent and explosive magma degassing at Stromboli volcano sustains high-temperature crater gas venting and a permanent volcanic plume which constitute key sources of information on the magma supply and dynamics, the physical processes controlling the explosive activity and, more broadly, the volcano feeding system. The chemical composition and the mass output of these crater emissions (gases, trace metals, radioactive isotopes) were measured using different methodologies: within-plume airborne measurements, ground-based plume filtering, and/or in situ analysis, remote UV and open-path Fourier transform infrared absorption spectroscopy. The results obtained, summarized in this paper, demo…

Basaltgeographygeography.geographical_feature_categoryVolcanoImpact craterLavaMagmaMineralogyPetrologyVesicular textureGeologyStrombolian eruptionMelt inclusions
researchProduct

Age and tectonic setting of granitoid gneisses in the Eastern Desert of Egypt and south-west Sinai

1994

Strongly deformed and locally migmatized gneisses occur at several places in the southern Eastern Desert of Egypt and in Sinai and have variously been interpreted as a basement to Pan-african (≈900 to 600 Ma) supracrustal and intrusive assemblages. A suite of grabbroic to granitic gneisses was investigated in the Hafafit area, which constitutes an I-type calc-alkaline intrusive assemblage whose chemistry suggests emplacement along an active continental margin and whose granitoid members can be correlated with the so-called ‘Older Granites’ of Egypt. 207Pb/206Pb single zircon evaporation from three samples of the Hafafit gneisses yielded protolith emplacement ages between 677 ± 9 and 700 ± 1…

Basement (geology)Continental marginBack-arc basinContinental crustMagmatismGeochemistryGeneral Earth and Planetary SciencesPetrologyProtolithGeologyGneissZirconGeologische Rundschau
researchProduct

Magma Degassing at Piton de la Fournaise Volcano

2015

Since about 1860 AD, magmatic gas release at Piton de la Fournaise volcano is very weak during intra-eruptive phases and essentially occurs during the relatively short-lived eruptions. Recent gas measurements performed during an eruption in October 2010, combined with detailed review of melt and fluid inclusion composition in magmas erupted over the past 50 kyrs, indicate that most PdF eruptions extrude magmas having variably degassed at shallow depth (P 1 kbar) and the shallow magmas, whose fluids are efficiently scrubbed by the hydrothermal system and the water table. Quantification of SO2 fluxes permits to track syn-eruptive magma ascent at shallow level (above sea level). Deeper exsolut…

Below sea levelgeographygeography.geographical_feature_categoryVolcanoWater tableEarth scienceMagmaGas releaseInclusion (mineral)PetrologySea levelGeologyHydrothermal circulation
researchProduct

A Multiphysics Approach to Constrain the Dynamics of the Altiplano‐Puna Magmatic System

2021

Continuous Interferometric Synthetic Aperture Radar (InSAR) monitoring (> 25 years) has revealed a concentric surface deformation pattern above the Altiplano-Puna magma body (APMB) in the central Andes. Here, we use a joint interpretation of seismic imaging, gravity anomalies and InSAR data to constrain location, 3D geometry and density of the magma body. By combining gravity modelling, thermomechanical modelling, scaling law analysis and Bayesian inference, we are able to create a relationship between the geometry of a mid-crustal magma body and surface observations. Furthermore, we can estimate the uncertainties associated with the geometry of the APMB and identify the most important para…

Buoyancy010504 meteorology & atmospheric sciencesGeophysical imagingMultiphysicsGeophysicsengineering.material010502 geochemistry & geophysics01 natural sciencesGravity anomalyGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyInterferometric synthetic aperture radarMagmaEarth and Planetary Sciences (miscellaneous)engineeringDensity contrastJoint (geology)Geology0105 earth and related environmental sciencesJournal of Geophysical Research: Solid Earth
researchProduct

The geological CO2degassing history of a long-lived caldera

2015

The majority of the ~100 Holocene calderas on Earth host vigorously active hydrothermal systems, the heat and volatile budgets of which are sustained by degassing of deeply stored magma. Calderas may thus contribute a nontrivial, although poorly quantified, fraction of the global budget of magmatic volatiles such as CO2. Here we use original isotopic a d petrological results from Campi Flegrei volcano, Italy, to propose that hydrothermal calcites are natural mineral archives for the magmatic CO2 that reacted with reservoir rocks during the geological history of a caldera. We show that Campi Flegrei calcites, identified in core samples extracted from 3-km-deep geothermal wells, formed at iso…

Calcitegeographygeography.geographical_feature_categoryEarth scienceGeochemistryGeologyHydrothermal circulationFumarolechemistry.chemical_compoundVolcanochemistryMagmaCalderaGeothermal gradientHoloceneGeologyGeology
researchProduct

Caribbean Plate margin evolution: constraints and current problems

2021

Oceanic crust was generated at multiple spreading centres during the Jurassic and Early Cretaceous, forming a "proto-Caribbean" oceanic domain. During the Cretaceous, part of that crustal domain thickened into an oceanic plateau, of petrologic Mid-Ocean Ridge (MOR) to Ocean Island Basalt (OIB) affinity. Simultaneously, the South and North American continental plates developed rifting and tholeiitic magmatism in the Middle America region (Venezuela and Cuba). The rifting created space for the proto-Caribbean oceanic domain. Petrological and regional correlations suggest that, beginning in the Cretaceous, the proto-Caribbean domain was involved into two main stages of subduction, referred to …

Caribbean PlatePlate-tectonic models.Tectono-magmatic settingCaribbean Plate Ophiolites Tectono-magmatic setting Geodynamic evolution Plate-tectonic models.Caribbean Plate Ophiolites Tectono-magmatic setting Geodynamic evolution Plate-tectonic modelOphiolitesPlate-tectonic modelsGeodynamic evolutionNO
researchProduct

ChemInform Abstract: Kimberlite, Carbonatite, and Potassic Magmatism as Part of the Geochemical Cycle

2013

ChemistryMagmatismCarbonatiteGeochemistryMineralogyGeneral MedicineKimberliteGeochemical cycleChemInform
researchProduct