Search results for "Volcanic eruption"

showing 10 items of 33 documents

The impact of Mt. Etna's ash plume on the chemical composition of meteoric deposition

2019

Mt. Etna, in eastern coast of Sicily (Italy), is one of the most active and most intensely monitored volcanoes of the planet. It is the biggest volcanic point source of volcanic gases and particles to the troposphere in the Mediterranean basin. On the morning of December 24th 2018, a new lateral eruption of the Mount Etna started. This eruption was related to an intrusion of a magmatic dike on the high eastern flank of the volcano, which a two kilometers long fracture in the NNW - SSE direction. At the same time, the summit craters also produced a continuous strombolian activity generating a very dense dark ash plume, dispersed by the wind into the southeastern direction. This volcanic even…

Mt. Etna rainwater volcanic eruptionSettore GEO/08 - Geochimica E Vulcanologia
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Increased thyroid cancer incidence in a basaltic volcanic area is associated with non-anthropogenic pollution and biocontamination

2016

The increased thyroid cancer incidence in volcanic areas suggests an environmental effect of volcanic-originated carcinogens. To address this problem, we evaluated environmental pollution and biocontamination in a volcanic area of Sicily with increased thyroid cancer incidence. Thyroid cancer epidemiology was obtained from the Sicilian Regional Registry for Thyroid Cancer. Twenty-seven trace elements were measured by quadrupole mass spectrometry in the drinking water and lichens (to characterize environmental pollution) and in the urine of residents (to identify biocontamination) in the Mt. Etna volcanic area and in adjacent control areas. Thyroid cancer incidence was 18.5 and 9.6/10(5) inh…

RegistrieMaleEpidemiologyEndocrinology Diabetes and MetabolismEnvironmental pollution010501 environmental sciences01 natural sciencesSettore MED/13 - Endocrinologia0302 clinical medicineEndocrinologyAdenocarcinoma FollicularRegistriesLichenThyroid cancerSicilyThyroid NeoplasmCadmiumgeography.geographical_feature_categoryIncidenceThyroidEnvironmental exposureMiddle AgedHeavy metalmedicine.anatomical_structure030220 oncology & carcinogenesisEnvironmental chemistryTrace elementFemaleHumanAdultMineralogychemistry.chemical_elementVolcanic EruptionsThyroid cancer03 medical and health sciencesmedicineHumansThyroid Neoplasms0105 earth and related environmental sciencesAgedCross-Sectional StudiegeographyTrace elementsVolcanic areaDrinking WaterEnvironmental Exposuremedicine.diseaseCarcinoma PapillaryMercury (element)Cross-Sectional StudieschemistryVolcanoEnvironmental scienceThyroid cancer; Volcanic area; Trace elementsEnvironmental Pollution
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Interaction between seismicity and deformation on different time scales in volcanic areas: Campi Flegrei and Stromboli

2019

We study oscillations recorded at Stromboli and Campi Flegrei by different sensors: seismometers, strainmeters and tiltmeters. We examine both the high-frequency (>0.5 Hz) portion of the spectrum and very long period signals up to tidal scales. In this context, seismicity and deformation are investigated on different time scales (from minutes to days/years) in order to identify the basic elements of their interaction, whose understanding should provide new insights on the predictive models. In this work, the strict relation of tides and volcanic processes is shown. At Stromboli, indeed the transition from the stationary phase to the non-stationary phase seems to have a tidal precu…

Seismometer010504 meteorology & atmospheric scienceslcsh:Dynamic and structural geologyanalysisfrequency analysisTiltmeterContext (language use)VolcanismInduced seismicity010502 geochemistry & geophysicsdiurnal variation01 natural sciencesvolcanic eruptionvolcanologylcsh:QE500-639.5lcsh:Science0105 earth and related environmental sciencesgeographyvolcanismgeography.geographical_feature_categoryVulcanian eruptionlcsh:QE1-996.5deformationGeneral MedicineVolcanologydeformation; diurnal variation; frequency analysis; numerical model; seismicity; time series; analysis; volcanic eruption; volcanism;volcanologylcsh:GeologyVolcanolcsh:Qseismicitytime seriesnumerical modelGeologySeismology
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Ocean acidification bends the mermaid's wineglass

2015

Ocean acidification lowers the saturation state of calcium carbonate, decreasing net calcification and compromising the skeletons of organisms such as corals, molluscs and algae. These calcified structures can protect organisms from predation and improve access to light, nutrients and dispersive currents. While some species (such as urchins, corals and mussels) survive with decreased calcification, they can suffer from inferior mechanical performance. Here, we used cantilever beam theory to test the hypothesis that decreased calcification would impair the mechanical performance of the green alga Acetabularia acetabulum along a CO 2 gradient created by volcanic seeps off Vulcano, Italy. Cal…

Settore BIO/07 - EcologiaMechanical performanceVolcanic EruptionsCalcium CarbonateCalcificationchemistry.chemical_compoundCalcification PhysiologicNutrientAlgaeMediterranean SeamedicineSeawaterAbiotic componentbiologyEcologyfungiGlobal Change BiologyOcean acidificationCarbon Dioxidebiology.organism_classificationmedicine.diseaseSeaweedAgricultural and Biological Sciences (miscellaneous)AcetabulariaBiomechanical PhenomenaAcetabularia acetabulumCalcium carbonateItalychemistryStiffneGeneral Agricultural and Biological SciencesAcetabularia acetabulumCalcification
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Source and Nature of Inhaled Atmospheric Dust from Trace Element Analyses of Human Bronchial Fluids

2011

International audience; Rapid volcanic eruptions quickly ejecting large amounts of dust provoke the accumulation of heavy metals in people living in surrounding areas. Analyses of bronchoalveolar lavage samples (BAL) collected from people exposed to the paroxysmal 2001 Etna eruption revealed a strong enrichment of many toxic heavy metals. Comparing the BAL to the dust composition of southeastern Sicily, we found that only V, Cr, Mn, Fe, Co, and U enrichment could be related to the volcanic event, whereas Ni, Cu, Cd, and Pb contents come from the dissolution of particles of anthropogenic origin. Furthermore, the nature of these inhaled anthropogenic particles was revealed by anomalous La and…

TEPHRA010504 meteorology & atmospheric sciences[SDU.STU]Sciences of the Universe [physics]/Earth Sciences550 - Earth sciencesVolcanic EruptionsPM2.5010501 environmental sciences01 natural sciencesvolcanic eruptionBRONCHOALVEOLAR LAVAGEatmospheric particulatetrace element distributionDISSOLUTIONTRACEREnvironmental ChemistryHumansVOLCANIC ASHTephraDissolutionSicilyERUPTION0105 earth and related environmental sciencesgeographyInhalation Exposuregeography.geographical_feature_categoryChemistryAtmosphereTrace elementDustGeneral ChemistryAtmospheric dustParticulatesReference Standardsatmospheric particulate; trace element distribution; volcanic eruptionTrace ElementsSettore GEO/08 - Geochimica E Vulcanologiarespiratory tract diseasesTrace elements lanthanides medical geochemistry bronchoalveolar lavagesVolcanoSolubility13. Climate actionEnvironmental chemistryBronchoalveolar Lavage FluidVolcanic ashEnvironmental MonitoringASH PARTICLES
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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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A golden era for volcanic gas geochemistry?

2022

The exsolution, rise, expansion, and separation of volatiles from magma provide the driving force behind both effusive and explosive volcanic eruptions. The field of volcanic gas geochemistry therefore plays a key role in understanding volcanism. In this article, we summarize the most important findings of the past few decades and how these shape today’s understanding of volcanic degassing. We argue that the recent advent of automated, continuous geochemical monitoring at volcanoes now allows us to track activity from unrest to eruption, thus providing valuable insights into the behavior of volatiles throughout the entire sequence. In the next 10 years, the volcanological community stands t…

VolatilesGeochemistryGeochemistry and PetrologyVolcanic eruptionsVolcanic gases
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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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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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Groundwater radon measurements in the Mt. Etna area.

2003

Radon levels were measured in 119 groundwater samples collected throughout the active volcanic area of Mt. Etna by means of a portable Lucas-type scintillation chamber. The measured activity values range from 1.8 to 52.7 Bq l(-1). About 40% of the samples exceed the maximum contaminant level of 11 Bq l(-1) proposed by the USEPA in 1991. The highest radon levels are measured in the eastern sector of the volcano, which is the seismically most active zone of the volcano. On the contrary the south-western sector, which is both seismically active and a site of intense magmatic degassing, display lower radon levels. This is probably due to the formation of a free gas phase (oversaturation of CO(2…

Water Pollutants RadioactiveHealth Toxicology and Mutagenesischemistry.chemical_elementMineralogyRadonAquiferSoil scienceVolcanic EruptionsEnvironmental ChemistryMaximum Contaminant LevelSoil Pollutants RadioactiveWater pollutionWaste Management and DisposalGeothermal gradientgeographygeography.geographical_feature_categoryData CollectionGeneral MedicinePollutionchemistryVolcanoItalyRadonEnvironmental scienceWater qualityGroundwaterEnvironmental MonitoringJournal of environmental radioactivity
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