0000000000181927

AUTHOR

Santiago Arellano

0000-0002-0306-3782

showing 12 related works from this author

First results of the Piton de la Fournaise STRAP 2015 experiment: multidisciplinary tracking of a volcanic gas and aerosol plume

2016

Abstract. The STRAP (Synergie Transdisciplinaire pour Répondre aux Aléas liés aux Panaches volcaniques) campaign was conducted in 2015 to investigate the volcanic plumes of Piton de La Fournaise (La Réunion, France). For the first time, measurements at the local (near the vent) and at the regional scales around the island were conducted. The STRAP 2015 campaign has become possible thanks to a strong cross-disciplinary collaboration between volcanologists and meteorologists. The main observations during four eruptive periods (85 days) are summarized. They include the estimates of SO2, CO2 and H2O emissions, the altitude of the plume at the vent and over different areas of La Réunion Island, …

[PHYS.PHYS.PHYS-AO-PH]Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph]STRAP 2015 experiment[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmosphereAtmospheric SciencePiton de La FournaiseGaz volcaniqueslcsh:QC1-999La Réunionlcsh:ChemistryReunion IslandvolcanoVolcanic gaslcsh:QD1-99913. Climate actionaerosol plume[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/Volcanologylcsh:Physics
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Multi-component gas emission measurements of the active lava lake of Nyiragongo, DR Congo

2017

Between 2007 and 2011 four measurement campaigns (June 2007, July 2010, June 2011, and December 2011) were carried out at the crater rim of Nyiragongo volcano, DR Congo. Nyiragongo is one of the most active volcanoes in Africa. The ground-based remote sensing technique Multi-Axis Differential Optical Absorption Spectroscopy (MAX-DOAS), which uses scattered sunlight, the in-situ Multi-Component Gas Analyzer System (Multi-GAS) and alkaline impregnated filter were simultaneously applied during all field trips. The bromine monoxide to sulfur dioxide (BrO/SO2) and carbon dioxide to sulfur dioxide (CO2/SO2) molar ratios were determined, among other ratios. During the different field trips variati…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesLavaDifferential optical absorption spectroscopyMineralogyGeology010502 geochemistry & geophysics01 natural sciencesLava lake level changeGas analyzerPlumechemistry.chemical_compoundNyiragongochemistryVolcanoCarbon dioxideMagmaGas compositionGas composition variationGeology0105 earth and related environmental sciencesEarth-Surface Processes
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Retrieval of absolute SO<sub>2</sub> column amounts from scattered-light spectra – Implications for the evaluation of dat…

2016

Abstract. Scanning Differential Optical Absorption Spectroscopy (DOAS) networks using scattered solar radiation have become an increasingly important tool for monitoring volcanic sulphur dioxide (SO2) emissions. In order to get absolute column densities (CDs), the DOAS evaluation requires a Fraunhofer Reference Spectrum (FRS) that is free of absorption structures of the trace gas of interest. At volcanoes, this requirement can be formulated in a weaker form, if there is a plume free viewing direction within the spectra of a scan through the complete sky. In this case, it is possible to use a specific viewing direction (e.g. zenith) as FRS and correcting for possible plume contamination in t…

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The emissions of CO2 and other volatiles from the world’s subaerial volcanoes

2019

AbstractVolcanoes are the main pathway to the surface for volatiles that are stored within the Earth. Carbon dioxide (CO2) is of particular interest because of its potential for climate forcing. Understanding the balance of CO2 that is transferred from the Earth’s surface to the Earth’s interior, hinges on accurate quantification of the long-term emissions of volcanic CO2 to the atmosphere. Here we present an updated evaluation of the world’s volcanic CO2 emissions that takes advantage of recent improvements in satellite-based monitoring of sulfur dioxide, the establishment of ground-based networks for semi-continuous CO2-SO2 gas sensing and a new approach to estimate key volcanic gas param…

geographyMultidisciplinarygeography.geographical_feature_category010504 meteorology & atmospheric sciencesSubductionEarth sciencelcsh:Rlcsh:MedicineCrustRadiative forcing010502 geochemistry & geophysics01 natural sciencesMantle (geology)chemistry.chemical_compoundchemistryVolcanovolcanic gasesSubaerialCarbon dioxidelcsh:QCO2lcsh:ScienceSulfur dioxide0105 earth and related environmental sciences
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Variation of the BrO/SO2 molar ratio in the plume of Tungurahua volcano between 2007 and 2017 and its relationship to volcanic activity

2019

International audience; Recent long-term observations of the bromine monoxide (BrO) to sulphur dioxide (SO2) molar ratio in volcanic plumes have suggested a link between changes in the BrO/SO2 ratio and the volcanic activity. Nevertheless, understanding of the mechanisms determining this link is still limited due to the lack of studies on volcanic bromine release from the melt into the atmosphere. We present the results of 10 years (2007–2017) of observations of the BrO/SO2 molar ratio in the volcanic plume of Tungurahua volcano, Ecuador. Following the nearly continuous eruptive activity from 1999 to 2008, Tungurahua showed alternating phases of eruptive activity separated by periods of qui…

Molarratio010504 meteorology & atmospheric sciencesBromine monoxideMineralogySO2010502 geochemistry & geophysics01 natural sciencesBrOMolar ratio[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/Volcanologylcsh:Science0105 earth and related environmental sciencesObservational databasegeographygeography.geographical_feature_categorydegassingTungurahuaStrombolian eruptionPlumeNOVACvolcanoVolcanic plumeVolcano13. Climate actionDOASGeneral Earth and Planetary SciencesEnvironmental sciencelcsh:Q
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Gas emission strength and evolution of the molar ratio of BrO/SO2in the plume of Nyiragongo in comparison to Etna

2015

Airborne and ground-based differential optical absorption spectroscopy observations have been carried out at the volcano Nyiragongo (Democratic Republic of Congo) to measure SO2 and bromine monoxide (BrO) in the plume in March 2004 and June 2007, respectively. Additionally filter pack and multicomponent gas analyzer system (Multi-GAS) measurements were carried out in June 2007. Our measurements provide valuable information on the chemical composition of the volcanic plume emitted from the lava lake of Nyiragongo. The main interest of this study has been to investigate for the first time the bromine emission flux of Nyiragongo (a rift volcano) and the BrO formation in its volcanic plume. Mea…

Atmospheric SciencegeographyBrominegeography.geographical_feature_categoryLavaDifferential optical absorption spectroscopyFluxchemistry.chemical_elementMineralogyGas analyzerPlumeGeophysicschemistryVolcanoSpace and Planetary ScienceEarth and Planetary Sciences (miscellaneous)Chemical compositionGeologyJournal of Geophysical Research: Atmospheres
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Ground-Based measurements of the 2014-2015 holuhraun volcanic cloud (Iceland)

2018

he 2014–2015 Bárðarbunga fissure eruption at Holuhraun in central Iceland was distinguished by the high emission of gases, in total 9.6 Mt SO2, with almost no tephra. This work collates all ground-based measurements of this extraordinary eruption cloud made under particularly challenging conditions: remote location, optically dense cloud with high SO2 column amounts, low UV intensity, frequent clouds and precipitation, an extensive and hot lava field, developing ramparts, and high-latitude winter conditions. Semi-continuous measurements of SO2 flux with three scanning DOAS instruments were augmented by car traverses along the ring-road and along the lava. The ratios of other gases/SO2 were …

Eldgos010504 meteorology & atmospheric sciencesLavaHoluhraun; Bárðarbunga; gas; SO<sub>2</sub>; cloud height; eruption monitoring; fissure eruptionBárðarbunga; cloud height; eruption monitoring; fissure eruption; gas; Holuhraun; SO2GaEarth and Planetary Sciences(all)SO2Fissure eruption010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesSO 2GosmökkurLava fieldgasBrennisteinsdíoxíðPrecipitationTephraHoluhraun/dk/atira/pure/subjectarea/asjc/19000105 earth and related environmental sciencesSOgeographygeography.geographical_feature_categoryConjunction (astronomy)eruption monitoringfissure eruptionlcsh:QE1-996.5Sprungugoscloud heightPlumelcsh:GeologyBárðarbunga13. Climate actionGasCloud heightGeneral Earth and Planetary SciencesEruption monitoringLofttegundirCloud heightEarth and Planetary Sciences (all)GeologyVolcanic ash
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Volcanic Gas Emissions Along the Colombian Arc Segment of the Northern Volcanic Zone (CAS-NVZ): Implications for volcano monitoring and volatile budg…

2019

Studying spatial and temporal trends in volcanic gas compositions and fluxes is crucial both to volcano monitoring and to constrain the origin and recycling efficiency of volatiles at active convergent margins. New volcanic gas compositions and volatile fluxes are here reported for Nevado del Ruiz, Galeras, and Purace, three of the most persistently degassing volcanoes located in the Colombian Arc Segment of the Northern Volcanic Zone. At Nevado del Ruiz, from 2014 to 2017, plume emissions showed an average molar CO2/S-T ratio of 3.9 +/- 1.6 (S-T is total sulfur, S). Contemporary, fumarolic chemistry at Galeras progressively shifted toward low-temperature, S-depleted fumarolic gas discharge…

geographyColombian Arc Segmentgeography.geographical_feature_category010504 meteorology & atmospheric sciencesMantle wedgeSubductionGaleraVolcanic beltGeochemistrySedimentarc volcanismNevado del Ruiz010502 geochemistry & geophysics01 natural sciencesPlumeArc (geometry)GeophysicsVolcanoGeochemistry and PetrologySubaerialvolatile fluxesGeologyPurace0105 earth and related environmental sciences
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Tracking Formation of a Lava Lake From Ground and Space: Masaya Volcano (Nicaragua), 2014-2017

2018

A vigorously degassing lava lake appeared inside the Santiago pit crater of Masaya volcano (Nicaragua) in December 2015, after years of degassing with no (or minor) incandescence. Here we present an unprecedented-long (3 years) and continuous volcanic gas record that instrumentally characterizes the (re)activation of the lava lake. Our results show that, before appearance of the lake, the volcanic gas plume composition became unusually CO 2 rich, as testified by high CO 2 /SO 2 ratios (mean: 12.2 ± 6.3) and low H 2 O/CO 2 ratios (mean: 2.3 ± 1.3). The volcanic CO 2 flux also peaked in November 2015 (mean: 81.3 ± 40.6 kg/s; maximum: 247 kg/s). Using results of magma degassing models and budg…

Convection010504 meteorology & atmospheric sciencesLava2Flux010502 geochemistry & geophysics01 natural sciencesGeochemistry and Petrologylava lakeMasayaPetrologyGeophysicvolcanic CO0105 earth and related environmental scienceslava lakes; Masaya; MODIS; Multi-GAS; scanning-DOAS; volcanic CO2 flux; Geophysics; Geochemistry and Petrologyscanning-DOASgeographygeography.geographical_feature_categoryvolcanic CO 2 fluxlava lakesPit cratervolcanic CO2 fluxPlumefluxGeophysicsMODISVolcanoMagmaGradual increaseMulti-GASGeologyGeochemistry, Geophysics, Geosystems
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Plume composition and volatile flux of Nyamulagira volcano, Democratic Republic of Congo, during birth and evolution of the lava lake, 2014-2015

2017

Very little is known about the volatile element makeup of the gaseous emissions of Nyamulagira volcano. This paper tries to fill this gap by reporting the first gas composition measurements of Nyamulagira’s volcanic plume since the onset of its lava lake activity at the end of 2014. Two field surveys were carried out on 1 November 2014, and 13–15 October 2015. We applied a broad toolbox of volcanic gas composition measurement techniques in order to geochemically characterize Nyamulagira’s plume. Nyamulagira is a significant emitter of SO2, and our measurements confirm this, as we recorded SO2 emissions of up to ~ 14 kt/d during the studied period. In contrast to neighbouring Nyiragongo volc…

geographygeography.geographical_feature_categoryBromine010504 meteorology & atmospheric sciencesHydrogenLavaFluxMineralogychemistry.chemical_elementNyamulagira Plume composition Total gas flux010502 geochemistry & geophysics01 natural sciencesPlumechemistry.chemical_compoundVolcanochemistryGeochemistry and PetrologyGas compositionHydrogen chlorideGeology0105 earth and related environmental sciences
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Shallow system rejuvenation and magma discharge trends at Piton de la Fournaise volcano (La Réunion Island)

2017

International audience; Basaltic magma chambers are often characterized by emptying and refilling cycles that influence their evolution in space and time, and the associated eruptive activity. During April 2007, the largest historical eruption of Piton de la Fournaise (Île de La Réunion, France) drained the shallow plumbing system (>240×106 m3>240×106 m3) and resulted in collapse of the 1-km-wide summit crater. Following these major events, Piton de la Fournaise entered a seven-year long period of near-continuous deflation interrupted, in June 2014, by a new phase of significant inflation. By integrating multiple datasets (lava discharge rates, deformation, seismicity, gas flux, gas composi…

010504 meteorology & atmospheric sciencesLavaeffusive paroxysmMagma chamber010502 geochemistry & geophysicseffusive trend01 natural sciencesEffusive eruptionImpact crater[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/Geochemistryeffusive paroxysm; effusive trends; Piton de la Fournaise; shallow plumbing system; unloading; Geophysics; Geochemistry and Petrology; Earth and Planetary Sciences (miscellaneous); Space and Planetary ScienceGeochemistry and Petrologyunloading[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyEarth and Planetary Sciences (miscellaneous)Petrology0105 earth and related environmental sciencesBasaltgeographygeography.geographical_feature_categoryeffusive trendsFumarolePiton de la FournaiseGeophysicsVolcanoshallow plumbing systemSpace and Planetary ScienceMagmaGeologySeismology
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Aerial strategies advance volcanic gas measurements at inaccessible, strongly degassing volcanoes

2020

Aerial measurements using unoccupied aerial systems (UAS) transform our ability to measure and monitor volcanic plumes.

010504 meteorology & atmospheric sciencessub-053705 Geology010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesMantle (geology)Carbon cycleVolcanic GasesFlux (metallurgy)eventResearch Articles0105 earth and related environmental sciencesevent.disaster_typegeographyMultidisciplinarygeography.geographical_feature_categorySciAdv r-articlesSampling (statistics)Sediment37 Earth Sciences3703 GeochemistryPlumeApplied Sciences and EngineeringVolcanoPhysical SciencesManam volcanic gases UASResearch ArticleScience Advances
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