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  5. Magma–rock interactions: a review of their influence on magma rising processes with emphasis on short-timescale assimilation of carbonate rocks
 
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Magma–rock interactions: a review of their influence on magma rising processes with emphasis on short-timescale assimilation of carbonate rocks

Author(s)
Knuever, Marco  
Università degli Studi di Bari Aldo Moro  
Sulpizio, Roberto  
Università degli Studi di Bari Aldo Moro  
Mele, Daniela  
Università degli Studi di Bari Aldo Moro  
Costa, Antonio  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Bologna, Bologna, Italia  
Language
English
Obiettivo Specifico
4V. Processi pre-eruttivi
Publisher
Geological Society, London
Status
Published
Refereed
Yes
Journal
Volcanic Processes in the Sedimentary Record: When Volcanoes Meet the Environment  
Date Issued
2022
Alternative Location
https://www.lyellcollection.org/doi/epdf/10.1144/SP520-2021-177
URI
https://www.earth-prints.org/handle/2122/15837
Subjects
04.08. Volcanology  
Abstract
The interaction of magma and wall-rocks is inevitable when magma is moving through Earth's crust. These interactions happen on different timescales and especially the short-term interactions (seconds to days) during the final ascent of the magma can induce changes in eruption dynamics. However, information on this matter is scarce and scattered in different scientific fields. We conducted this review in order to present a full picture of the state of the art for short-timescale magma–wall-rock interactions. According to the three existing studies on short-term magma–carbonate interactions, magma viscosity is the most important controlling factor for carbonate assimilation. Lower viscosity magmas enhance CO2-bubble migration away from the reaction site, resulting in a higher carbonate assimilation rate. The released CO2 plays an important role regarding eruption dynamics since a higher CO2 release rate would result in accelerated magma ascent and may increase eruption intensity. Despite the importance for hazard assessment, important factors (pressure, magma composition, vapour phase solubilities, carbonate clast properties) for carbonate assimilation in general and CO2 release rate in particular are not or only poorly constrained. This review presents the present-day knowledge of short-term magma–carbonate interaction that is relevant to establish the basis for future work concerning magma–wall-rock interactions.
Type
book chapter
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