Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/11384
Authors: Isaia, Roberto* 
Vitale, Roberto* 
Di Giuseppe, Maria Giulia* 
Iannuzzi, Enrico* 
Tramparulo, Francesco D'Assisi* 
Troiano, Antonio* 
Title: Stratigraphy, structure, and volcano-tectonic evolution of Solfatara maar-diatreme (Campi Flegrei, Italy)
Journal: GSA Bulletin 
Series/Report no.: 9-10/127 (2015)
Issue Date: 2015
DOI: 10.1130/B31183.1
Keywords: Solfatara volcano
maar-diatreme
Campi Flegrei
electrical resistivity tomography
Subject Classification04.08. Volcanology 
Abstract: This study focuses on the Solfatara volcano within Campi Flegrei, a volcanic eld located on the Tyrrhenian coast of southern Italy. Volcanism at the Campi Flegrei caldera has included phreatic to phreatomagmatic explosions and both magmatic (ranging from small scoria-producing events to those with Plinian columns) and effusive eruptions. These eruptions have formed tuff cones, tuff rings, minor scoria cones, and lava domes. A detailed stratigraphic, structural, and geo- physical study of the area indicates that the Solfatara volcano is a maar-diatreme structure previously not recognized within the Campi Flegrei caldera. It is characterized by a crater cut into earlier volcanic deposits, a small rim of ejecta, and a deep structure (down to 2–3 km). This maar-diatreme has allowed the gases and uids to ow up to the surface over a long time. A new geological map and cross sections show a complex architecture of different volcano-tectonic features including scoria cones, lavas, crypto- domes, feeder dikes, pipes, ring and regional faults, and explosive craters. Volcanological data were collected with the main aim of characterizing the eruptive activity in a lim- ited sector of the caldera. Fault and fracture analyses, using the scan line methodology, highlight the role of the main structures that accompanied the volcanic evolution within this sector of the Campi Flegrei caldera. To better constrain the subsurface structure of the Solfatara crater, electrical resistivity tomography investigations were integrated with the volcano-tectonic information. All data suggest that the Solfatara area is dominated by a maar-diatreme evolution. Pres- ently, the Solfatara area shows widespread hydrothermal and fumarolic activity that is localized along the major faults. The results allow us to de ne a particular type of vol- canic activity in the recent past, in what is still considered today an area with a higher probability of opening new vents, particu- larly for possible phreatic activity.
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