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  5. Highly explosive basaltic eruptions driven by CO2 exsolution
 
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Highly explosive basaltic eruptions driven by CO2 exsolution

Author(s)
Allison, Chelsea M  
Roggensack, Kurt  
Clarke, Amanda B  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Pisa, Pisa, Italia  
Language
English
Obiettivo Specifico
4V. Processi pre-eruttivi
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Nature Communications  
Issue/vol(year)
/12 (2021)
Publisher
Nature PG
Pages (printed)
217
Date Issued
January 11, 2021
DOI
10.1038/s41467-020-20354-2
URI
https://www.earth-prints.org/handle/2122/15332
Subjects
04.08. Volcanology  
Subjects

Explosive eruptions

Basaltic eruptions

Abstract
The most explosive basaltic scoria cone eruption yet documented (>20 km high plumes) occurred at Sunset Crater (Arizona) ca. 1085 AD by undetermined eruptive mechanisms. We present melt inclusion analysis, including bubble contents by Raman spectroscopy, yielding high total CO2 (approaching 6000 ppm) and S (~2000 ppm) with moderate H2O (~1.25 wt%). Two groups of melt inclusions are evident, classified by bubble vol%. Modeling of post-entrapment modification indicates that the group with larger bubbles formed as a result of heterogeneous entrapment of melt and exsolved CO2 and provides evidence for an exsolved CO2 phase at magma storage depths of ~15 km. We argue that this exsolved CO2 phase played a critical role in driving this explosive eruption, possibly analogous to H2O exsolution driving silicic caldera-forming eruptions. Because of their distinct gas compositions relative to silicic magmas (high S and CO2), even modest volume explosive basaltic eruptions could impact the atmosphere.
Type
article
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s41467-020-20354-2.pdf

Description
Open Access published article
Size

1.25 MB

Format

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