Search results for "volcanism"

showing 10 items of 90 documents

Reply to the “Comment by Delmelle et al. (2013) on ‘Scavenging of sulfur, halogens and trace metals by volcanic ash: The 2010 Eyjafjallajökull erupti…

2014

Abstract With this short communication we address the principal issues raised by Delmelle et al. (2014) in relation to the work of Bagnato et al. (2013) concerning the 2010 eruption of Eyjafjallajokull, Iceland. The principal conclusions of the work of Bagnato et al. (2013) include the observation that protracted gas-aerosol interaction in the plume promotes selective leaching of cation species from ash, with alkalis and Ca (and, among trace elements, Zn and Cu) being more rapidly re-mobilized (and transferred to soluble surface salts) relative to more inert elements (Mg, Ti). They also observed that adsorption onto ash surfaces is a major atmospheric sink of volcanic acidic gases, with 282…

LEACHING OF ASHgeographygeography.geographical_feature_categoryChemistryMineralogychemistry.chemical_elementexplosive volcanismSulfurSettore GEO/08 - Geochimica E VulcanologiaPlumeexplosive volcanism; VOLCANIC ASH; EyjafjallajökullAdsorptionEyjafjallajökullVolcanoVOLCANIC ACID GASGeochemistry and PetrologyINTERACTION ASH-PLUMEHalogenddc:5502010 EYJAFJALLAJOKULL ERUPTIONSelective leachingVOLCANIC ASHScavengingVolcanic ashGeochimica et Cosmochimica Acta
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BLAST WAVES AT YASUR VOLCANO

2013

Infrasonic and seismic waveforms were collected during violent strombolian activity at Yasur Volcano (Vanuatu). Averaging similar to 3000 seismic events showed stable waveforms, evidencing a low-frequency (0.1-0.3Hz) signal preceding similar to 5-6s the explosion. Infrasonic waveforms were mostly asymmetric with a sharp compressive (5-106Pa) onset, followed by a small long-lasting rarefaction phase. Regardless of the pressure amplitude, the ratio between the positive and negative phases was constant. These waveform characteristics closely resembled blast waves. Infrared imagery showed an apparent cold spherical front similar to 20 m thick, which moved between 342 and 405m/s before the explo…

Explosive Dynamicsblast wavesinfrasound[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologystrombolianExplosive volcanismGeophysical Research Letters
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Along-arc, inter-arc and arc-to-arc variations in volcanic gas CO 2 /S T ratios reveal dual source of carbon in arc volcanism

2017

Abstract Some 300–600 Tg of volatiles are globally vented each year by arc volcanism. Such arc gas emissions have contributed to past and present-day evolution of the Earth atmosphere and climate by recycling mineral-bound volatiles subducted along active slabs. Carbon dioxide (CO 2 ) and total sulphur (S T ) are, after water, the major components of volcanic arc gases. Understanding their relative abundances (e.g., the CO 2 /S T ratio) in arc volcanic gases is important to constrain origin and recycling efficiency of these volatiles along the subduction factory, and to better constrain the global arc volcanic CO 2 flux. Here, we review currently available information on global variations o…

event.disaster_typegeographyeducation.field_of_studygeography.geographical_feature_category010504 meteorology & atmospheric sciencesSubductionVolcanic arcEarth sciencePopulationGeochemistryVolcanism010502 geochemistry & geophysics01 natural sciencesArc (geometry)Volcanic GasesVolcanovolcanic gasesMagmaGeneral Earth and Planetary ScienceseventeducationGeology0105 earth and related environmental sciencesEarth-Science Reviews
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A revised stratigraphy of the pre-Green Tuff ignimbrites at Pantelleria (Sicily Channel)

2012

Peralkaline silicic magmas were erupted at Pantelleria in a variety of eruptive typologies and magnitudes: pyroclastic flows, Plinian to strombolian pumice fallout and lava flows. The initial cycle (330- 180 ka) was characterized mainly by effusive activity, and was followed by an intermediate cycle (181 - 85 ka), characterized by a clear drift to explosive activity. This period, onto we focus, is bracketed by six ignimbrite-forming eruptions (older and intermediate of the two caldera collapses at 140 and 50 ka that characterize the volcanological history of the island, which drained silicic and variably peralkaline magma for a cumulative volume close to 6 km3 DRE. These ignimbrites lack of…

PAntelleria ignimbrites volcanism
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Volcanisme explosif aérien au passageCarbonifère-Permien dans les bassinsstéphano-autuniens d’Europe de l’Ouest

2016

National audience; Les bassins stéphano-autuniens d’Europe de l’Ouest, associésà un régime d’extension post-orogénique, ont enregistrésde fréquentes manifestations volcaniques. Ces évènements sonttoutefois encore relativement peu étudiés et datés en particulierdans les bassins sédimentaires bordant le Massif Central. Uninventaire des épisodes volcaniques associés aux retombées decendres est établi, dans l’optique de préciser la nature du volcanisme,la localisation des sources et fournir des âges radiométriquesU-Pb. Ces âges numériques sont fondamentaux pour calibrer lesséries sédimentaires continentales européennes et les corréler auxéquivalents temporels des séries marines d’Asie ou des Et…

[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/Stratigraphydatation radiométrique[SDU.STU.ST] Sciences of the Universe [physics]/Earth Sciences/StratigraphyTonstein[ SDU.STU.ST ] Sciences of the Universe [physics]/Earth Sciences/StratigraphypaléovolcanismePermien
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Explosive eruptive history of Pantelleria, Italy: Repeated caldera collapse and ignimbrite emplacement at a peralkaline volcano

2018

A new, pre-Green Tuff (46 ka) volcanic stratigraphy is presented for the peralkaline Pantelleria Volcano, Italy. New 40Ar/39Ar and paleomagnetic data are combined with detailed field studies to develop a comprehensive stratigraphic reconstruction of the island.We find that the pre-46 ka succession is characterised by eight silicarich peralkaline (trachyte to pantellerite) ignimbrites,many ofwhich blanketed the entire island. The ignimbrites are typically welded to rheomorphic, and are commonly associated with lithic breccias and/or pumice deposits. They record sustained radial pyroclastic density currents fed by lowpyroclastic fountains. The onset of ignimbrite emplacement is typically prec…

010504 meteorology & atmospheric sciencesGeochemistryPyroclastic rockTrachyte010502 geochemistry & geophysics01 natural sciencesPeralkaline rock40Ar/39Ar datingEffusive eruptionGeochemistry and PetrologyPumiceBreccia[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyCalderaEruptive history0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryIgnimbritesPeralkaline volcanismSettore GEO/07 - Petrologia E PetrografiaSettore GEO/08 - Geochimica E VulcanologiaCaldera collapsePeralkaline volcanism Pantelleria Ignimbrites Caldera collapse Eruptive history 40Ar/39Ar datingGeophysicsVolcano13. Climate actionSeismologyGeologyPantelleria
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Comparing methods for computation of run-up heights of landslide-generated tsunami in the Northern Sicily continental margin

2018

The North Sicily continental margin is a very active region located in the Central Mediterranean. Strong seismicity, active tectonics and volcanism, fluid escape, high sediment supply, and widespread mass movements historically have exposed this region to marine geohazards, with a potential for tsunami generation. Morpho-bathymetric analysis revealed that one of the most common mechanisms associated with marine geohazards is due to submarine mass failure processes, genetically linked to the other processes active in this margin. With the aim to assess the risks associated with landslide-generated anomalous waves, we selected two sectors of this margin, Gulf of Palermo to the west and Patti …

010504 meteorology & atmospheric sciencestsunami run-up submarine landslideLandslideVolcanismEnvironmental Science (miscellaneous)Induced seismicity010502 geochemistry & geophysicsGeotechnical Engineering and Engineering GeologyOceanography01 natural sciencesTectonicsContinental marginMargin (machine learning)Earth and Planetary Sciences (miscellaneous)Submarine pipelineSeismologyGeology0105 earth and related environmental sciencesSubmarine landslide
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Thematic vent opening probability maps and hazard assessment of small-scale pyroclastic density currents in the San Salvador volcanic complex (El Sal…

2021

The San Salvador volcanic complex (El Salvador) and Nejapa-Chiltepe volcanic complex (Nicaragua) have been characterized by a significant variability in eruption style and vent location. Densely inhabited cities are built on them and their surroundings, including the metropolitan areas of San Salvador (∼2.4 million people) and Managua (∼1.4 million people), respectively. In this study we present novel vent opening probability maps for these volcanic complexes, which are based on a multi-model approach that relies on kernel density estimators. In particular, we present thematic vent opening maps, i.e., we consider different hazardous phenomena separately, including lava emission, small-scale…

010504 meteorology & atmospheric sciencesLavaPyroclastic rockVolcanismHazard analysis010502 geochemistry & geophysicsHazard mapvolcanic hazard mapping01 natural sciencesEnvironmental technology. Sanitary engineeringGPhreatomagmatic eruptionGeography. Anthropology. Recreation[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyGE1-350TD1-10660105 earth and related environmental sciencesgeographyQE1-996.5geography.geographical_feature_categoryGeologyEnvironmental sciencesThematic mapVolcano13. Climate actionGeneral Earth and Planetary Sciencesvent opening hazard map San Salvador volcano Nejapa-Chiltepe volcanic zoneGeologySeismology
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Degassing vs. eruptive styles at Mt. Etna volcano (Sicily, Italy). Part I: Volatile stocking, gas fluxing, and the shift from low-energy to highly ex…

2018

International audience; Basaltic magmas can transport and release large amounts of volatiles into the atmosphere, especially in subduction zones, where slab-derived fluids enrich the mantle wedge. Depending on magma volatile content, basaltic volcanoes thus display a wide spectrum of eruptive styles, from common Strombolian-type activity to Plinian events. Mt. Etna, in Sicily, is a typical basaltic volcano where the volatile control on such a variable activity can be investigated. Based on a melt inclusion study in products from Strombolian or lava-fountain activity to Plinian eruptions, here we show that for the same initial volatile content, different eruptive styles reflect variable dega…

Melt inclusion010504 meteorology & atmospheric sciencesExplosive materialMantle wedgeGeochemistryengineering.material010502 geochemistry & geophysics01 natural sciencesMicroliteGeochemistry and Petrology[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyBasaltic explosive volcanism0105 earth and related environmental sciencesMelt inclusionsBasaltgeographygeography.geographical_feature_categorySubductionMt. EtnaTotal volatilesChemical thermodynamicsGeologyTotal volatileStrombolian eruptionChemical thermodynamicVolcano13. Climate actionengineeringMelt inclusionsGeology
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Transition from mildly-tholeiitic to calc-alkaline suite: the case of Chichontepec volcanic centre, El Salvador, Central America.

1998

tholeiitic volcanism El Salvador
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