Publication | Open Access
Unusually large magmatic CO<sub>2</sub> gas emissions prior to a basaltic paroxysm
116
Citations
20
References
2010
Year
Magmatic ProcessVolcanic Gas ChemistryVolcanologyEngineeringVolcanismEarth ScienceExplosionsGeophysicsVolcano MonitoringBasaltic ParoxysmVolcanic ProcessPassive Gas LeakageEnergetic ExplosionsMagmatismCo 2GeologyMantle GeochemistryTectonicsEarth SciencesGeochemistryIgneous Process
The low‐intensity activity of basaltic volcanoes is occasionally interrupted by short‐lived but energetic explosions which, whilst frequently observed, are amongst the most enigmatic volcanic events in Nature. The combination of poorly understood and deep, challenging to measure, source processes make such events currently impossible to forecast. Here we report increases in quiescent degassing CO 2 emissions (>10,000 t/day) prior to a powerful explosive event on Stromboli volcano on 15 March 2007. We interpret such large CO 2 flux as being sourced by passive gas leakage from a deeply (>4 km) stored magma, whose depressurization, possibly caused by the onset of an effusive eruption on 28 February 2007, was the explosion trigger. Our observations suggest that continuous CO 2 flux monitoring may allow anomalously large explosions to be accurately forecast at basaltic volcanoes.
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