Search results for "volcano"

showing 10 items of 591 documents

Short-period volcanic gas precursors to phreatic eruptions: Insights from Poás Volcano, Costa Rica

2016

Texto completo del documento Volcanic eruptions involving interaction with water are amongst the most violent and unpredictable geologic phenomena on Earth. Phreatic eruptions are exceptionally difficult to forecast by traditional geophysical techniques. Here we report on short-term precursory variations in gas emissions related to phreatic blasts at Poás volcano, Costa Rica, as measured with an in situ multiple gas analyzer that was deployed at the edge of the erupting lake. Gas emitted from this hyper-acid crater lake approaches magmatic values of SO2/CO21–6 days prior to eruption. The SO2flux derived from magmatic degassing through the lake is measureable by differential optical absorpti…

VOLCANOES010504 meteorology & atmospheric sciencesEarth scienceGeochemistry010502 geochemistry & geophysics7. Clean energy01 natural sciencesVOLCANIC ERUPTIONSHydrothermal circulationeruption precursorGeochemistry and PetrologyCrater lakePhreatomagmatic eruptionEarth and Planetary Sciences (miscellaneous)phreatic eruptionERUPCIONES VOLCÁNICASGEOLOGYGas compositionGeophysicPhreatic0105 earth and related environmental sciencesvolcanic lakegeographygeography.geographical_feature_categoryhydrothermal systemGEOLOGÍAvolcanic gaPARQUE NACIONAL VOLCÁN POÁS (COSTA RICA)Phreatic eruptionGeophysicsHeat fluxVolcano13. Climate actionSpace and Planetary ScienceVOLCANESPoás volcanovolcanic gasGeologyEarth and Planetary Science Letters
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Generation of CO2-rich melts during basalt magma ascent and degassing

2013

International audience; To test mechanisms of basaltic ma gma degassing, continuous decompressions of volatile-bearing (2.7-3.8 wt% H2O, 600-1300 ppm CO2) Stromboli melts were performed from 250-200 to 50-25 MPa at 1180-1140°C. Ascent rates were varied from 0.25 to ~ 1.5 m/s. Glasses after decompression show a wide range of textures, from totally bubble-free to bubble-rich, the latter with bubble number densities from 104 to 106/cm3, similar to Stromboli pumices. Vesicularities range from 0 to ~ 20 vol%. Final melt H2O concentrations are homogeneous and always close to solubilities. In contrast, the rate of vesiculation controls the final melt CO2 concentration. High vesicularity charges ha…

Volatiles010504 meteorology & atmospheric sciencesBubbleDiffusion[SDE.MCG]Environmental Sciences/Global ChangesVolatileMineralogyThermodynamicsBasaltic meltDecompression experimentVolcanism010502 geochemistry & geophysicsBasaltic melts01 natural sciencesStress (mechanics)Geochemistry and Petrology[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyExplosive volcanism0105 earth and related environmental sciencesBasaltSettore GEO/07 - Petrologia E PetrografiaMagma degassingCO2- oversaturationGeophysics13. Climate actionHomogeneousCO2-oversaturationMagmaDecompression e xperimentsOrder of magnitudeGeology
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Gas emissions from five volcanoes in northern Chile and implications for the volatiles budget of the Central Volcanic Zone

2014

This study performed the first assessment of the volcanic gas output from the Central Volcanic Zone (CVZ) of northern Chile. We present the fluxes and compositions of volcanic gases (H2O, CO2, H2, HCl, HF, and HBr) from five of the most actively degassing volcanoes in this region—Lascar, Lastarria, Putana, Ollague, and San Pedro—obtained during field campaigns in 2012 and 2013. The inferred gas plume compositions for Lascar and Lastarria (CO2/Stot = 0.9–2.2; Stot/HCl = 1.4–3.4) are similar to those obtained in the Southern Volcanic Zone of Chile, suggesting uniform magmatic gas fingerprint throughout the Chilean arc. Combining these compositions with our own UV spectroscopy measurements of …

Volcanic Gasesevent.disaster_typegeographyGeophysicsgeography.geographical_feature_categoryVolcanoEarth scienceGeochemistryGeneral Earth and Planetary ScienceseventGas emissionsGeologyPlumeGeophysical Research Letters
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Forecasting Etna eruptions by real-time observation of volcanic gas composition

2007

It is generally accepted, but not experimentally proven, that a quantitative prediction of volcanic eruptions is possible from the evaluation of volcanic gas data. By discussing the results of two years of real-time observation of H2O, CO2, and SO2 in volcanic gases from Mount Etna volcano, we unambiguously demonstrate that increasing CO2/SO2 ratios can allow detection of the pre-eruptive degassing of rising magmas. Quantitative modeling by the use of a saturation model allows us to relate the pre-eruptive increases of the CO2/SO2 ratio to the refilling of Etna's shallow conduits with CO2-rich deep-reservoir magmas, leading to pressurization and triggering of eruption. The advent of real-ti…

Volcanic Gasesevent.disaster_typegeographygeography.geographical_feature_categoryVolcanoEtna volcanoGeologyeventGas compositionPetrologySaturation (chemistry)SeismologyGeologyGeology
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UVolc: A software platform for measuring volcanic SO2 fluxes

2012

We present here a novel stand-alone software platform, UVolc, for remotely sensed measurement of volcanic SO"2 emission rates. Such data are important diagnostics of activity conditions, with utility in forecasting measures. This code is made user friendly to enable volcanologists, who are not experts in the underlying physics of spectroscopy, to perform their own measurements. The program provides considerable reduction in errors and far greater operating flexibility than existing analogous code, which, unlike UVolc, can only interface with hardware no longer in manufacture. UVolc will be described here, including a presentation of data collected with this program in the field.

Volcanic SO2 monitoring Volcanic gas geochemistry Volcano remote sensingFlexibility (engineering)geographyUser Friendlygeography.geographical_feature_categorybusiness.industryInterface (computing)Real-time computingField (computer science)Settore GEO/08 - Geochimica E VulcanologiaSoftwareVolcanoCode (cryptography)Computers in Earth SciencesbusinessReduction (mathematics)GeologyInformation SystemsRemote sensingComputers & Geosciences
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Isotopically (δ13C and δ18O) heavy volcanic plumes from Central Andean volcanoes: a field study

2017

International audience; Stable isotopes of carbon and oxygen in volcanic gases are key tracers of volatile transfer between Earth's interior and atmosphere. Although important, these data are available for few volcanoes because they have traditionally been difficult to obtain and are usually measured on gas samples collected from fumaroles. We present new field measurements of bulk plume composition and stable isotopes (δ13CCO2 and δ18OH2O+CO2) carried out at three northern Chilean volcanoes using MultiGAS and isotope ratio infrared spectroscopy. Carbon and oxygen in magmatic gas plumes of Lastarria and Isluga volcanoes have δ13C in CO2 of +0.76‰ to +0.77‰ (VPDB), similar to slab carbonate;…

Volcanic gase010504 meteorology & atmospheric sciencesδ18Oδ13CEarth scienceGeochemistry010502 geochemistry & geophysics01 natural sciencesVolcanic GasesIsotopic signatureGeochemistry and Petrology[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyeventIsotope ratio infrared spectroscopy0105 earth and related environmental sciencesevent.disaster_typegeographygeography.geographical_feature_categoryStable isotope ratioCarbon isotopeδ18OFumaroleVolcanoIsotopes of carbon[SDU]Sciences of the Universe [physics]Kinetic fractionationGeology
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First determination of magma-derived gas emissions from Bromo volcano, eastern Java (Indonesia)

2015

The composition and fluxes of volcanic gases released by persistent open-vent degassing at Bromo Volcano, east Java (Indonesia), were characterised in September 2014 from both in-situ Multi-GAS analysis and remote spectroscopic (dual UV camera) measurements of volcanic plume emissions. Our results demonstrate that Bromo volcanic gas is water-rich (H2O/SO2 ratios of 56-160) and has CO2/SO2 (4.1 +/- 0.7) and CO2/S-tot (3.2 +/- 0.7) ratios within the compositional range of other high-temperature magma-derived gases in Indonesia. H-2/H2O and H2S/SO2 ratios constrain a magmatic gas source with minimal temperature of 700 degrees C and oxygen fugacity of 10(-17)-10(-18) bars. UV camera sensing on …

Volcanic gaseBromo volcanoJavaEastern javaAtmospheric sciencesVolcanic gases SO2 and CO2 fluxesVolcanic GasesBromo volcano; Eastern java; Indonesia; Multi-GAS; SO2 and CO2 fluxes; Tengger caldera; Volcanic gases; Geochemistry and Petrology; GeophysicsFlux (metallurgy)Caldera Eastern JavaSO2 and CO2 fluxesGeochemistry and PetrologyMineral redox bufferTengger[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyeventGas compositionVolcanic gasescomputer.programming_languageevent.disaster_typegeographygeography.geographical_feature_categoryIndonesia Multi-GASTengger CalderaSO2 and CO2 fluxeSettore GEO/08 - Geochimica E VulcanologiaPlumeEastern Java IndonesiaGeophysicsVolcanoIndonesia13. Climate actionMagmaTengger calderacomputerGeologySeismologyMulti-GAS
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Turmoil at Turrialba Volcano (Costa Rica): Degassing and eruptive processes inferred from high-frequency gas monitoring

2016

OVSICORI Eruptive activity at Turrialba Volcano (Costa Rica) has escalated significantly since 2014, causing airport and school closures in the capital city of San José. Whether or not new magma is involved in the current unrest seems probable but remains a matter of debate as ash deposits are dominated by hydrothermal material. Here we use high‐frequency gas monitoring to track the behavior of the volcano between 2014 and 2015 and to decipher magmatic versus hydrothermal contributions to the eruptions. Pulses of deeply derived CO2‐rich gas (CO2/Stotal > 4.5) precede explosive activity, providing a clear precursor to eruptive periods that occurs up to 2 weeks before eruptions, which are acc…

Volcanic gaseVolcano monitoringAtmospheric Scienceexplosive eruptionVOLCAN TURRIALBA (COSTA RICA)Soil ScienceSULFURAquatic ScienceOceanographyphreatomagmatic eruptionVOLCANIC ERUPTIONSHydrothermal systemGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)MAGMAphreatic eruptionAZUFRECOSTA RICAERUPCIONES VOLCÁNICASVOLCANIC ASHGeophysicWater Science and TechnologyCENIZA VOLCÁNICAPhreatomagmatic eruptionEcologyhydrothermal systemvolcano monitoringExplosive eruptionPaleontologyForestryTURRIALBA VOLCANO (COSTA RICA)volcanic gasesSpace and Planetary ScienceEarth-Surface ProcessePhreatic eruption
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Terminal Strombolian activity at Etna's central craters during summer 2012: The most CO2-rich volcanic gas ever recorded at Mount Etna

2016

By using a permanent network of multi-component gas analyzer systems (Multi-GAS), we report for the first time the H2O-CO2-SO2 composition of the volcanic gases emitted prior to, during, and after terminal Strombolian activity at Mount Etna's central craters (CCs). We show that the summer 2012 Strombolian episodes of the Bocca Nuova crater (BNC), the largest of Etna's CCs, are associated with the emission of the most CO2-rich gas measured at the volcano thus far. The BNC plume was particularly CO2-rich with CO2/SO2 up to 100, H2O/CO2 1 prevailed at the BNC and at other degassing vents such as Voragine and Northeast craters during Strombolian eruptions. Based on the results of numerical simu…

Volcanic gaseVolcano monitoringGeochemistry and PetrologyEtnaVolcanic degassingGeophysicMulti-GAS
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The bridge volcanic LIdar-BILLI: A review of data collection and processing techniques in the Italian most hazardous volcanic areas

2020

Volcanologists have demonstrated that carbon dioxide (CO2) fluxes are precursors of volcanic eruptions. Controlling volcanic gases and, in particular, the CO2 flux, is technically challenging, but we can retrieve useful information from magmatic/geological process studies for the mitigation of volcanic hazards including air traffic security. Existing techniques used to probe volcanic gas fluxes have severe limitations such as the requirement of near-vent in situ measurements, which is unsafe for operators and deleterious for equipment. In order to overcome these limitations, a novel range-resolved DIAL-Lidar (Differential Absorption Light Detection and Ranging) has been developed as part of…

Volcanic hazards010504 meteorology & atmospheric sciences010502 geochemistry & geophysics01 natural scienceslcsh:TechnologyData processing techniquesWind speedBridge (nautical)Volcanic Gaseslcsh:ChemistryHazardous wasteGeneral Materials ScienceeventVolcanic eruptionsInstrumentationlcsh:QH301-705.50105 earth and related environmental sciencesRemote sensingFluid Flow and Transfer Processesevent.disaster_typeCO2 flux Data processing techniques DIAL-Lidar Volcanic eruptions Volcanic plumesgeographyData collectiongeography.geographical_feature_categorylcsh:TProcess Chemistry and TechnologyCO<sub>2</sub> fluxGeneral Engineeringlcsh:QC1-999Computer Science ApplicationsfluxLidarVolcanolcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040DIAL-LidarVolcanic plumesEnvironmental scienceCO2lcsh:Engineering (General). Civil engineering (General)lcsh:Physics
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