ORCID
- Stewart, Iain: 0000-0002-9746-8667
Abstract
One of the most intriguing aspects of the evolution of Mount Etna (eastern Sicily) is the switch from a fissure-type shield volcano coincident with the Ionian coast to an inland cluster of nested stratovolcanoes close to the currently active centre. Previous geological studies infer that the switch reflects a tectonicallydriven rearrangement of the major border faults that direct the Etnean plumbing system, loosely dated at around 125 ka BP. New offshore structural studies throw this prevailing view into question, whilst a revised chronological framework indicates that the transformation from fissure- to central-type activity was abrupt, effectively occurring 129-126 ka BP. In recognising that this period corresponds closely with the Eemian sea-level highstand (Marine Isotope Stage 5e; 124-119 ka BP), the paper examines whether eustatic fluctuations may have triggered the fundamental change in Mount Etna’s magmatic behaviour, and suggests that a similar tendency may affect other volcanic centres in the region.
DOI
10.18814/epiiugs/2018/v41i1/018002
Publication Date
2018-03-01
Publication Title
Episodes: journal of international geoscience
Volume
41
Issue
1
ISSN
0705-3797
Embargo Period
2020-09-08
Organisational Unit
School of Geography, Earth and Environmental Sciences
First Page
7
Last Page
16
Recommended Citation
Stewart, I. S. (2018) 'Did sea-level change cause the switch from fissure-type to central-type volcanism at Mount Etna, Sicily?', Episodes: journal of international geoscience, 41(1), pp. 7-16. Available at: https://doi.org/10.18814/epiiugs/2018/v41i1/018002