Search results for " degassing"

showing 10 items of 98 documents

Earth Degassing in Tectonically Active Regions: New Evidences from Southern Italy and the Balkans

2022

BalkanEarth DegassingCarbon DioxideSouthern ItalyTectonicHeliumSettore GEO/08 - Geochimica E Vulcanologia
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The dynamics of slug trains in volcanic conduits: Evidence for expansion driven slug coalescence

2017

Strombolian volcanism is a ubiquitous form of activity, driven by the ascent and bursting of bubbles of slug morphology. Whilst considerable attention has been devoted to understanding the behaviour of individual slugs in this regime, relatively little is known about how inter-slug interactions modify flow conditions. Recently, we reported on high temporal frequency strombolian activity on Etna, in which the larger erupted slug masses were followed by longer intervals before the following explosion than the smaller bursts (Pering et al., 2015). We hypothesised that this behaviour arose from the coalescence of ascending slugs causing a prolonged lag before arrival of the next distinct bubble…

Basaltic degassingBasaltic degassing; Slug coalescence; Slug dynamics; Strombolian volcanism; Geophysics; Geochemistry and PetrologyGeochemistry and PetrologySlug dynamicStrombolian volcanismSlug coalescenceGeophysicSettore GEO/08 - Geochimica E Vulcanologia
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Degassing at the Volcanic/Geothermal System of Kos (Greece): Geochemical Characterization of the Released Gases and CO2 Output Estimation

2019

Forty-five gas samples have been collected from natural gas manifestations at the island of Kos—the majority of which are found underwater along the southern coast of the island. On land, two anomalous degassing areas have been recognized. These areas are mainly characterized by the lack of vegetation and after long dry periods by the presence of sulfate salt efflorescence. Carbon dioxide is the prevailing gas species (ranging from 88 to 99%), while minor amounts of N2 (up to 7.5%) and CH4 (up to 2.1%) are also present. Significant contents of H2 (up to 0.2%) and H2S (up to 0.3%) are found in the on-land manifestations. Only one of the underwater manifestations is generally rich in N2 (up t…

CO2 outputgeographygeography.geographical_feature_categoryGreece010504 meteorology & atmospheric sciencesArticle Subjectlcsh:QE1-996.5Geochemistry010502 geochemistry & geophysics01 natural sciencesSettore GEO/08 - Geochimica E VulcanologiaCharacterization (materials science)lcsh:Geologyvolcanic arcVolcanoAegean SeaGeneral Earth and Planetary SciencesVolcanic degassingGeothermal gradientGeology0105 earth and related environmental sciencesGeofluids
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Shrinkage Bubbles: The C–O–H–S Magmatic Fluid System at San Cristóbal Volcano

2018

New analytical results for the composition of shrinkage bubbles (09-70 vol. %) in olivine-hosted (Fo <80%) primary melt inclusions (MIs) have been incorporated into a novel geochemical model for San Cristó bal volcano, Nicaragua. The vapour, liquid, and mineral components found inside shrinkage bubbles may represent relics of early C-O-H-S fluids exsolved from a magmatichydrothermal system. This conclusion is supported by high-resolution Raman microspectroscopy revealing: (1) gaseous CO2 (d=0·17-0·31 g/cm3 in 31 samples) coexisting with liquid H2O (in seven samples) at ambient temperature (<22°C) inside the shrinkage bubbles of naturally quenched inclusions; (2) several mineral phases (i.e.…

CO2 H2O SO2 mgmatic degassing melt inclusionsgeographyGEO/07 - PETROLOGIA E PETROGRAFIAMelt inclusiongeography.geographical_feature_category010504 meteorology & atmospheric sciencesSan CristóbalFluid system010502 geochemistry & geophysics01 natural sciencesGeophysicsVolcanoGeochemistry and PetrologyGEO/08 - GEOCHIMICA E VULCANOLOGIARaman spectroscopyShrinkage bubblePetrologyGeophysicCopperGeology0105 earth and related environmental sciencesShrinkageJournal of Petrology
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Geochemistry of fluids and CO2 output in the southern Apennine (Italy): Preliminary results for cold and thermal waters

2020

Carbon Dioxide Earth Degassing Tectonics Appenine
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Fluid geochemistry and CO2 output in the southern Apennine (Italy): Preliminary results

2019

Carbon Dioxide Earth Degassing Tectonics Appenine
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Understanding Degassing Pathways Along the 1886 Tarawera (New Zealand) Volcanic Fissure by Combining Soil and Lake CO2 Fluxes

2019

CO2 flux measurements are often used to monitor volcanic systems, understand the cause of volcanic unrest, and map sub-surface structures. Currently, such measurements are incomplete at Tarawera (New Zealand), which erupted with little warning in 1886 and produced a ∼17 km long fissure. We combine new soil CO2 flux and C isotope measurements of Tarawera with previous data from Rotomahana and Waimangu (regions also along the 1886 fissure) to fingerprint the CO2 source, understand the current pathways for degassing, quantify the CO2 released along the entire fissure, and provide a baseline survey. The total CO2 emissions from the fissure are 1227 t⋅d–1 (742–3398 t⋅d–1 90 % confidence interval…

Carbon Isotopesgeographygeography.geographical_feature_categoryFissureTaraweraGeochemistryCo2 fluxSilicic:Geology [Science]Soil co2 fluxRotomahanaCurrent (stream)medicine.anatomical_structureVolcanocarbon isotopesmedicineGeneral Earth and Planetary SciencesCalderalcsh:QWaimangulcsh:ScienceCO2 fluxvolcanic degassingGeothermal gradientGeologyFrontiers in Earth Science
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Preliminary results of carbon degassing in the tectonically active areas of Balkan Peninsula

2020

The deeply derived CO2 from tectonically active areas is contributing in a significant proportion, still unquantified in detail, to CO2 Earth degassing. Several studies highlighted how in these tectonically active areas most of the CO2 is dissolved in the groundwaters circulating in the large regional aquifers hosted by the permeable formations of the active orogens. Quantifying the amount of deep CO2 dissolved into groundwater can represent a powerful tool for regional investigations, because springs are representative of their catchment area that can extend from tens to hundreds of square kilometers. In the framework of a Deep Carbon Observatory supported project, we investigated for the …

Carbon dioxide Earth degassing geochemistry Balkan Peninsula
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Widening the applicability of AnMBR for urban wastewater treatment through PDMS membranes for dissolved methane capture: Effect of temperature and hy…

2021

[EN] AnMBR technology is a promising alternative to achieve future energy-efficiency and environmental-friendly urban wastewater (UWW) treatment. However, the large amount of dissolved methane lost in the effluent represents a potential high environmental impact that hinder the feasibility of this technology for full-scale applications. The use of degassing membranes (DM) to capture the dissolved methane from AnMBR effluents can be considered as an interesting alternative to solve this problem although further research is required to assess the suitability of this emerging technology. The aim of this study was to assess the effect of operating temperature and hydrodynamics on the capture of…

Dissolved methane captureEnvironmental EngineeringGreenhouse gas (GHG) emissions0208 environmental biotechnology02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawWastewater01 natural sciencesWaste Disposal FluidMethaneWater Purificationchemistry.chemical_compoundBioreactorsOperating temperatureMass transferAnaerobiosisDimethylpolysiloxanesWaste Management and DisposalEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesPDMS degassing MembraneEnergy recoveryFoulingAnaerobic membrane bioreactor (AnMBR)Membrane foulingUrban wastewaterTemperatureMembranes ArtificialGeneral MedicinePulp and paper industry020801 environmental engineeringWastewaterchemistryHydrodynamicsEnvironmental scienceMethaneJournal of environmental management
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Impact of geogenic degassing on C-isotopic composition of dissolved carbon in karst systems of Greece

2022

The Earth C-cycle is complex, where endogenic and exogenic sources are interconnected, operating in a multiple spatial and temporal scale (Lee et al., 2019). Non-volcanic CO2 degassing from active tectonic structures is one of the less defined components of this cycle (Frondini et al., 2019). Carbon mass-balance (Chiodini et al., 2000) is a useful tool to quantify the geogenic carbon output from regional karst hydrosystems. This approach has been demonstrated for central Italy and may be valid also for Greece, due to the similar geodynamic settings. Deep degassing in Greece has been ascertained mainly at hydrothermal and volcanic areas, but the impact of geogenic CO2 released by active tect…

Earth C-cycle CO2 degassing karst systems.Settore GEO/08 - Geochimica E Vulcanologia
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