Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.12544/942
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Samaniego Eguiguren, Pablo
Rivera Porras, Marco Antonio
Mariño Salazar, Jersy
Guillou, Hervé
Liorzou, Céline
Zerathe, Swann
Delgado Ramos, Rosmery
Valderrama Murillo, Patricio Alonso
Scao, Vincent
Arequipa
2018-01-09T16:04:08Z
2018-01-09T16:04:08Z
2016-09
Samaniego, P.; Rivera, M.; Mariño, J.; Guillou, H.; Liorzou, C.; Zerathe, S.; Delgado, R.; Valderrama, P.; & Scao, V. (2016) - The eruptive chronology of the Ampato-Sabancaya volcanic complex (Southern Peru). Journal of Volcanology and Geothermal Research, 323, 110–128. Doi: 10.1016/j.jvolgeores.2016.04.038
https://hdl.handle.net/20.500.12544/942
pp.110-128
We have reconstructed the eruptive chronology of the Ampato-Sabancaya volcanic complex (Southern Peru) on the basis of extensive fieldwork, and a large dataset of geochronological (40K-40Ar,14C and3He) and geochemical (major and trace element) data. This volcanic complex is composed of two successive edifices that have experienced discontinuous volcanic activity from Middle Pleistocene to Holocene times. The Ampato compound volcano consists of a basal edifice constructed over at least two cone-building stages dated at 450-400 ka and 230-200 ka. After a period of quiescence, the Ampato Upper edifice was constructed firstly during an effusive stage (80-70 ka), and then by the formation of three successive peaks: the Northern, Southern (40-20 ka) and Central cones (20-10 ka). The Southern peak, which is the biggest, experienced large explosive phases, resulting in deposits such as the Corinta plinian fallout. During the Holocene, eruptive activity migrated to the NE and constructed the mostly effusive Sabancaya edifice. This cone comprised many andesitic and dacitic blocky lava flows and a young terminal cone, mostly composed of pyroclastic material. Most samples from the Ampato-Sabancaya define a broad high-K magmatic trend composed of andesites and dacites with a mineral assemblage of plagioclase, amphibole, biotite, ortho- and clino-pyroxene, and Fe-Ti oxides. A secondary trend also exists, corresponding to rare dacitic explosive eruptions (i.e. Corinta fallout and flow deposits). Both magmatic trends are derived by fractional crystallisation involving an amphibole-rich cumulate with variable amounts of upper crustal assimilation.A marked change in the overall eruptive rate has been identified between Ampato (~0.1 km3/ka) and Sabancaya (0.6-1.7 km3/ka). This abrupt change demonstrates that eruptive rates have not been homogeneous throughout the volcano's history. Based on tephrochronologic studies, the Late Holocene Sabancaya activity is characterised by strong vulcanian events, although its erupted volume remained low and only produced a local impact through ash fallout. We have identified at least 6 eruptions during the last 4-5 ka, including the historical AD 1750-1784 and 1987-1998 events. On the basis of this recurrent low-to-moderate explosive activity, Sabancaya must be considered active and a potentially threatening volcano.
application/pdf
eng
Elsevier
urn:issn:0377-0273
info:eu-repo/semantics/restrictedAccess
Instituto Geológico, Minero y Metalúrgico – INGEMMET
Repositorio Institucional INGEMMET
Erupciones volcánicas
Geocronología
Riesgo volcánico
Volcanes
Ampato
Sabancaya
The eruptive chronology of the Ampato-Sabancaya volcanic complex (Southern Peru)
info:eu-repo/semantics/article
Geociencias
NL
https://doi.org/10.1016/j.jvolgeores.2016.04.038
Journal of Volcanology and Geothermal Research
Peer reviewed
Journal of Volcanology and Geothermal Research, v. 323, 2016, pp.110-128

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