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Published on: June 13, 2015
Magmatic gas composition reveals the source depth of slug-driven strombolian explosive activity
Mike Burton1, Patrick Allard, Filippo Muré
1Istituto Nazionale di Geofisica e Vulcanologia, Catania, Italy. burton@ct.ingv.it
Abstract:
Strombolian-type eruptive activity, common at many volcanoes, consists of regular explosions driven by the bursting of gas slugs that rise faster than surrounding magma. Explosion quakes associated with this activity are usually localized at shallow depth; however, where and how slugs actually form remain poorly constrained. We used spectroscopic measurements performed during both quiescent degassing and explosions on Stromboli volcano (Italy) to demonstrate that gas slugs originate from as deep as the volcano-crust interface (approximately 3 kilometers), where both structural discontinuities and differential bubble-rise speed can promote slug coalescence. The observed decoupling between deep slug genesis and shallow (approximately 250-meter) explosion quakes may be a common feature of strombolian activity, determined by the geometry of plumbing systems.
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