The Early Miocene “Bisciaro volcaniclastic event” (northern Apennines, Italy): a key study for the geodynamic evolution of the central-western Mediterranean

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Title: The Early Miocene “Bisciaro volcaniclastic event” (northern Apennines, Italy): a key study for the geodynamic evolution of the central-western Mediterranean
Authors: Guerrera, Francesco | Martín-Martín, Manuel | Raffaelli, Giuliana | Tramontana, Mario
Research Group/s: Evolución Geodinámica de la Cordillera Bética Oriental y de la Plataforma Marina de Alicante
Center, Department or Service: Universidad de Alicante. Departamento de Ciencias de la Tierra y del Medio Ambiente
Keywords: Volcaniclastic event | Early Miocene | Umbria–Romagna–Marche Apennines | Stratigraphy | Petrography | Mediterranean-scale correlations | Geodynamic model
Knowledge Area: Geodinámica Interna
Issue Date: Jun-2015
Publisher: Springer Berlin Heidelberg
Citation: International Journal of Earth Sciences. 2015, 104(4): 1083-1106. doi:10.1007/s00531-014-1131-5
Abstract: The Early Miocene Bisciaro Fm., a marly limestone succession cropping out widely in the Umbria–Romagna–Marche Apennines, is characterized by a high amount of volcaniclastic content, characterizing this unit as a peculiar event of the Adria Plate margin. Because of this volcaniclastic event, also recognizable in different sectors of the central-western Mediterranean chains, this formation is proposed as a “marker” for the geodynamic evolution of the area. In the Bisciaro Fm., the volcaniclastic supply starts with the “Raffaello” bed (Earliest Aquitanian) that marks the base of the formation and ends in the lower portion of the Schlier Fm. (Late Burdigalian–Langhian p.p.). Forty-one studied successions allowed the recognition of three main petrofacies: (1) Pyroclastic Deposits (volcanic materials more than 90 %) including the sub-petrofacies 1A, Vitroclastic/crystallo-vitroclastic tuffs; 1B, Bentonitic deposits; and 1C, Ocraceous and blackish layers; (2) Resedimented Syn-Eruptive Volcanogenic Deposits (volcanic material 30–90 %) including the sub-petrofacies 2A, High-density volcanogenic turbidites; 2B, Low-density volcanogenic turbidites; 2C, Crystal-rich volcanogenic deposits; and 2D, Glauconitic-rich volcaniclastites; (3) Mixing of Volcaniclastic Sediments with Marine Deposits (volcanic material 5–30 %, mixed with marine sediments: marls, calcareous marls, and marly limestones). Coeval volcaniclastic deposits recognizable in different tectonic units of the Apennines, Maghrebian, and Betic Chains show petrofacies and chemical–geochemical features related to a similar calc-alkaline magmatism. The characterization of this event led to the hypothesis of a co-genetic relationship between volcanic activity centres (primary volcanic systems) and depositional basins (depositional processes) in the Early Miocene palaeogeographic and palaeotectonic evolution of the central-western Mediterranean region. The results support the proposal of a geodynamic model of this area that considers previously proposed interpretations.
Sponsor: This research was supported by Urbino University funds (responsibles F. Guerrera and M. Tramontana); by CGL2011-30153-CO2-02 and CGL2012-32169 Research Project (Spanish Ministry of Education and Science); and by Research Groups and projects of the Generalitat Valenciana and Alicante University (CTMA-IGA).
URI: http://hdl.handle.net/10045/53212
ISSN: 1437-3254 (Print) | 1437-3262 (Online)
DOI: 10.1007/s00531-014-1131-5
Language: eng
Type: info:eu-repo/semantics/article
Rights: © Springer-Verlag Berlin Heidelberg 2015. The final publication is available at Springer via http://dx.doi.org/10.1007/s00531-014-1131-5
Peer Review: si
Publisher version: http://dx.doi.org/10.1007/s00531-014-1131-5
Appears in Collections:INV - GEODIN - Artículos de Revistas

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