Search results for "Geothermal gradient"

showing 10 items of 52 documents

Changes in fluid geochemistry and physico-chemical conditions of geothermal systems caused by magmatic input: The recent abrupt outgassing off the is…

2005

Abstract Hydrothermal systems and related vents can exhibit dramatic changes in their physico-chemical conditions over time as a response to varying activity in the feeding magmatic systems. Massive steam condensation and gas scrubbing processes of thermal fluids during their ascent and cooling cause further compositional changes that mask information regarding the conditions evolving at depth in the hydrothermal system. Here we propose a new stability diagram based on the CO2-CH4-CO-H2 concentrations in vapor, which aims at calculating the temperatures and pressures in hydrothermal reservoirs. To filter gas scrubbing effects, we have also developed a model for selective dissolution of CO2-…

Southern EuropeEastern HemisphereWorldPanareaGeochemistryHydrothermal circulationEuropeOutgassingItalyGeochemistry and PetrologyMagmaMessina [Sicily]EurasiaSeawaterSicilyVolatilesGeothermal gradientDissolutionGeologyLipari IslandThermal fluidsGeochimica et Cosmochimica Acta
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Regional variations in the chemical and helium–carbon isotope composition of geothermal fluids across Tunisia

2011

Abstract Tunisia has numerous thermo-mineral springs. Previous studies have shown that their chemical composition and occurrence are strongly influenced by the regional geology. However little work has been done so far to study the isotopic composition of volatiles associated with these geothermal manifestations. Here, we report on the results of an extensive survey of both natural hot springs and production wells across Tunisia, aimed at investigating the spatial distribution of thermal fluids' geochemical characteristics and He–C isotopic composition. The chemistry of the analyzed samples highlights the heterogeneity of the water mineralization processes in Tunisia, as a consequence of th…

Tunisia010504 meteorology & atmospheric sciencesEarth scienceGeochemistryAquiferengineering.material010502 geochemistry & geophysics01 natural sciencesMantle (geology)Geochemistry and PetrologyTunisia; Helium isotopes; Carbon isotopes; Geothermal fluids; Groundwaters; Thermal springs[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentGroundwaterChemical compositionGeothermal gradientComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmospheregeographygeography.geographical_feature_categoryRiftCarbon isotopeThermal springsGeologyHelium isotopeSettore GEO/08 - Geochimica E Vulcanologia13. Climate actionIsotopes of carbonMagmatismengineeringHaliteGeothermal fluidGeologyChemical Geology
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Helium and CO2 soil gas emission from Santorini (Greece)

1994

Soil gas investigation is a useful tool to detect active faults. The sudden appearance of soil gas anomalies in zones of deep-reaching faults represents a promising potential precursor of earthquakes and volcanic eruptions. In volcanic areas the development of soil gas monitoring techniques is particularly important, as they can represent, together with remote sensing techniques, the only geochemical methods that can be safely applied during volcanic unrest, when it becomes impossible or too dangerous to sample crater fumaroles. A soil gas survey was carried out in June 1993 at the main island of Thera, in the Santorini volcanic complex. CO2 flux and CO2 and helium concentrations were measu…

Volcanic hazardsgeographygeography.geographical_feature_categorySoil gasGeochemistryActive faultFault (geology)FumaroleImpact craterVolcanoGeochemistry and PetrologyGeothermal gradientSeismologyGeologyBulletin of Volcanology
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Gas emissions and crustal deformation from the Krýsuvík high temperature geothermal system, Iceland

2020

Abstract The Krýsuvik volcanic system is located on the oblique spreading Reykjanes Peninsula, SW Iceland. Since early 2009 the region has been undergoing episodes of localized ground uplift and subsidence. From April–November 2013, we operated near-real time monitoring of gas emissions in Krýsuvik, using a Multi-component Gas Analyzer System (Multi-GAS), collecting data on gas composition from a fumarole (H2O, CO2, SO2, H2S). The dataset in this study, comprises a near-continuous gas composition time series, the quantification of diffuse CO2 gas flux, analytical results for direct samples of dry gas, seismic records, and GPS data. Gas emissions from the Krýsuvik geothermal system were exam…

Volcano monitoringgeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesGeothermal gaVolcanic gaMineralogySubsidence (atmosphere)FluxCrustal deformation010502 geochemistry & geophysicsInlet01 natural sciencesGas analyzerFumaroleKrýsuvíkVolcanic CO2 fluxGeophysicsVolcanoGeochemistry and PetrologyGas compositionGeophysicGeothermal gradientGeology0105 earth and related environmental sciences
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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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A Low Cost Customizable Micro-ROV for Environmental Research - Applications, Advances and Challenges

2016

Summary Several shallow submarines areas are characterized by considerable releases of hydrocarbon gases, which, during earthquakes or volcanic activity, may suddenly and violently occur. In some instances, changes in chemical and physical properties of gas emissions, which are generated by geothermal systems connected to the volcanoes’ plumbing system, are important precursors of volcanic activity and useful indices for the study of the geothermal field. Furthermore, some superficial structures such faults, landslide slopes or archaeological relics should be studied with such a high detail that geophysical and bathymetric surveys are unable to provide. In response to the needs increasingly…

automatic controlEarth scienceEngineering geologySubmarineLandslideVolcanismRemotely operated underwater vehicleTectonicssubmarineROVgeophysicalSettore GEO/11 - Geofisica ApplicataGeothermal gradientGeologyEnvironmental geologyNear Surface Geoscience 2016 - Second Applied Shallow Marine Geophysics Conference
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Mantle-derived fluids discharged at the Bradanic foredeep/Apulian foreland boundary: The Maschito geothermal gas emissions (southern Italy)

2014

Abstract The mephitis of Maschito, known since historical times as Lago Fetente (Smelly Lake) -although the lake is now dry-, is located 20 km from the Mt. Vulture volcanic edifice (Southern Italy). It is placed along the same regional tectonic discontinuity where some maars are located, close to the boundary between the foredeep and the Apulian foreland. About 300 m2 of surface is lacking in flora, while dead animals are frequently found all around it. The smelly exhalations are mainly composed of CO2 (∼98%), and, in lesser amounts, of H2S, N2, CH4 and other hydrocarbons. He, Ne and Ar occur in trace amounts. The CO2 isotopic composition is in the range of that of the main active Italian v…

event.disaster_typegeographygeography.geographical_feature_categoryOlivineStratigraphyEarth scienceContinental crustGeochemistryGeologyengineering.materialOceanographyMantle (geology)Volcanic GasesGeophysicsVolcanoengineeringEconomic GeologyFluid inclusionseventForeland basinGeothermal gradientGeologyMarine and Petroleum Geology
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Geochemical investigations of submarine volcanic exhalations to the east of Panarea, Aeolian Islands, Italy

1991

Abstract Results are presented on scubadiving investigations carried out on thermal manifestations in the area of Panarea (Aeolian Islands). The area investigated falls inside a caldera which extends from the main island to the group of islets located to the northeast. The distribution of the gaseous manifestations is regulated by the NE-SW, NW-SE and N-S regional tectonic directrices, through which the more recent basic magma intruded, giving rise to dikes and pillow lavas. f O 2 -temperature relation of the gases sampled in the investigated area was calculated to be: log f O 2 = 11−24,593/ T which indicates that a buffering mechanism acted on the gases as they cooled down during their asc…

geographyDikegeography.geographical_feature_categoryPillow lavaGeochemistryMineralogyFumaroleTectonicsGeophysicsVolcanoGeochemistry and PetrologyMagmaCalderaGeothermal gradientGeologyJournal of Volcanology and Geothermal Research
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A new approach for the measurement of gaseous elemental mercury (GEM) and H2S in air from anthropogenic and natural sources: Examples from Mt. Amiata…

2017

Real-time measurements of GEM and H2S discharged from natural and anthropogenic sources are a valuable tool to investigate the dispersion dynamics of these contaminants in air. In this study, a new approach to measure GEM and H2S concentrations in air, carried out by coupling a portable Zeeman atomic absorption spectrometer with high frequency modulation of light polarization (Lumex RA-915M) and a pulsed fluorescence gas analyzer (Thermo Scientific Model 450i), was applied to two distinct areas: (i) in the surroundings of Piancastagnaio (Siena, Central Italy), located in the eastern flanks of Mt. Amiata (a 200,000Â years old volcano), where three geothermal plants are operating and whose ex…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesGaseous contaminantsLimit valueMineralogyElemental mercuryGEM and H2S010501 environmental sciences01 natural sciencesHydrothermal circulationGas analyzerWind speedImpact craterVolcanoGeochemistry and PetrologySolfatara craterGaseous contaminantEconomic GeologyReal-time measurementsReal-time measurementGeothermal gradientMt. AmiataGeology0105 earth and related environmental sciences
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Sulphur-gas concentrations in volcanic and geothermal areas in Italy and Greece: Characterising potential human exposures and risks

2013

Abstract Passive samplers were used to measure the atmospheric concentrations of SO 2 naturally emitted at three volcanoes in Italy (Etna, Vulcano and Stromboli) and of H 2 S naturally emitted at three volcanic/geothermal areas in Greece (Milos, Santorini and Nisyros). The measured concentrations and dispersion patterns varied with the strength of the source (open conduits or fumaroles), the meteorological conditions and the area topography. At Etna, Vulcano and Stromboli, SO 2 concentrations reach values that are dangerous to people affected by bronchial asthma or lung diseases (> 1000 μg m − 3 ). H 2 S values measured at Nisyros also exceed the limit considered safe for the same group of …

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesHydrogen sulphide010502 geochemistry & geophysics01 natural sciencesVolcanic riskFumaroleSettore GEO/08 - Geochimica E VulcanologiaSulphur dioxide Hydrogen sulphide Volcanic risksGas hazardVolcano13. Climate actionGeochemistry and PetrologyEconomic GeologyPhysical geographyGeothermal gradientGeologySeismology0105 earth and related environmental sciences
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