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Science

Geology of the High Sillaro Valley (Northern Apennines of Italy)

ORCID Icon, , ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 805-817 | Received 30 Mar 2020, Accepted 02 Oct 2020, Published online: 02 Nov 2020

References

  • Benini, A., De Nardo, M. T., & Severi, P. (2009). Note illustrative della Carta Geologica d’Italia alla scala 1:50.000. Foglio 238. Castel S. Pietro Terme. ISPRA – RER.
  • Benini, A., Martelli, L., Poccianti, C., & Rosselli, S. (2014). Note illustrative della Carta Geologica d’Italia alla scala 1:50.000. Foglio 253. Marradi. ISPRA – RER.
  • Bettelli, G., Boccaletti, M., Cibin, U., Panini, F., Poccianti, C., Rosselli, S., & Sani, F. (2002). Note Illustrative della Carta Geologica D’Italia alla scala 1:50.000, foglio 252 - Barberino del Mugello. Servizio Geologico d’Italia-Regione Emilia Romagna.
  • Bettelli, G., Conti, S., Panini, F., & Vannucchi, P. (2004). Mapping of chaotic rocks in Abruzzo (central Apennines). Comparison with selected examples from northern Apennines. In G. Pasquarè, & C. Venturini (Eds.), Mapping geology in Italy (pp. 199–206). S. EL. CA.
  • Bettelli, G., & Panini, F. (1989). I mélanges dell'Appennino settentrionale, dal T. Tresinaro al T. Sillaro. Memorie della Societa Geologica Italiana, 39 (1987), 187–214.
  • Bettelli, G., & Panini, F. (1992). Liguridi, mélanges e tettoniti nel complesso caotico lungo la “linea del Sillaro” (Appennino Settentrionale, Province di Firenze e Bologna). Memorie Descrittive Della Carta Geologica d’Italia, 46, 387–415.
  • Bettelli, G., Panini, F., & Capitani, M. (2002). Carta geologico-strutturale dell’Appennino emiliano sudorientale. In P. Barchiesi, A. Angelelli, & S. Forni (Eds.), Atti del terzo seminario sulla Cartografia geologica (pp. 47–52). LABANTI.
  • Bettelli, G., Panini, F., Fioroni, C., Nirta, G., Remitti, F., Vannucchi, P., & Carlini, M. (2012). Revisiting the geology of the “Sillaro Line”, Northern Apennines, Italy. Rendiconti Online Della Società Geologica Italiana, 22, 14–17.
  • Bettelli, G., & Vannucchi, P. (2003). Structural style of the offscraped Ligurian oceanic sequences of the Northern Apennines: New hypothesis concerning the development of mélange block-in-matrix fabric. Journal of Structural Geology, 25(3), 371–388. https://doi.org/10.1016/S0191-8141(02)00026-3
  • Bortolotti, V. (1966). La tettonica trasversale dell’Appennino: 1, La linea Livorno-Sillaro. Bollettino della Società geologica italiana, 85, 529–540.
  • Bortolotti, V., Principi, G., & Sani, F. (2009). Carta Geologica d'Italia alla scala 1:50.000, Foglio 264 “Borgo San Lorenzo”. ISPRA - Servizio Geologico d’Italia.
  • Bruni, P. (1973). Considerazioni tettoniche e paleogeografiche sulle serie dell’Appennino bolognese tra le valli dell’Idice e del Santerno. Memorie della Societa Geologica Italiana, 12(2), 157–185.
  • De Jager, J. (1979). The relation between tectonics and sedimentation along the “sillaro Line” (Northern Apennines, Italy). Geologica Ultraiectina, 19, 95.
  • Farabegoli, E. (2009). Carta Geologica D’Italia alla scala 1:50.000, foglio 238 “Castel S.Pietro Terme”. A.T.I. - S. EL. CA. - L.A.C. - SYSTEMCART, Firenze. Servizio Geologico d’Italia-Regione Emilia Romagna.
  • Festa, A., Pini, G. A., Ogata, K., & Dilek, Y. (2019). Diagnostic features and field-criteria in recognition of tectonic, sedimentary and diapiric mélanges in orogenic belts and exhumed subduction-accretion complexes. Gondwana Research, 74, 7–30. https://doi.org/10.1016/j.gr.2019.01.003
  • Fornaciari, E., Di Stefano A., Rio, D. & Negri, A. (1996). Middle Miocene quantitative calcareous nannofossil biostratigraphy in the Mediterranean region. Micropaleontology, 42, 37–63.
  • Ghelardoni, R. (1965). - Osservazioni sulla tettonica trasversale nell’Appennino Settentrionale. Bollettino della Società geologica italiana, 84, 277–290.
  • Landuzzi, A. (2006). Syn-depositional emplacement of the Liguride allochthon in the Miocene foredeep of the western Romagna Apennines. In G. Pasquarè, & C. Venturini (Eds.), Mapping Geology in Italy (pp. 219–226). S. EL. CA.
  • Lucente, C. C., Manzi, V., Ricci Lucchi, F., & Roveri, M. (2002). Did the Ligurian Sheet cover the whole thrust belt in Tuscany and Romagna Apennines? Some evidence from gravity emplaced deposits. Bollettino della Società geologica italiana, 1, 393–398.
  • Lucente, C. C., & Pini, G. A. (2003). Anatomy and emplacement mechanism of a large submarine slide within a Miocene foredeep in the northern Apennines. Italy: A field perspective. American Journal of Science, 303(7), 565–602. https://doi.org/10.2475/ajs.303.7.565
  • Lucente, C. C., & Pini, G. A. (2008). Basin-wide mass-wasting complexes as markers of the Oligo-Miocene foredeep-accretionary wedge evolution in the Northern Apennines, Italy. Basin Research, 20(1), 49–71. https://doi.org/10.1111/j.1365-2117.2007.00344.x
  • Martini, E. (1971). Standard Tertiary and Quaternary calcareous nannoplankton zonation. In A. Farinacci (Ed.), Proceedings 2nd international conference planktonic microfossils (Vol. 2, p. 739–785). Roma: Tecnoscienza.
  • Martelli, L. (2014). Carta Geologica D’Italia alla scala 1:50.000, foglio 253 “Marradi.” SYSTEMCART, Roma. Servizio Geologico d’Italia-Regione Emilia Romagna.
  • Nirta, G., Principi, G., & Vannucchi, P. (2007). The Ligurian Units of Western Tuscany (northern Apennines): insight on the influence of pre-existing weakness zones during ocean closure. Geodinamica Acta, 20(1-2), 71–97. https://doi.org/10.3166/ga.20.71-97
  • Ogata, K., Festa, A., Pini, G. A., Pogačnik, Ž, & Lucente, C. C. (2019). Substrate deformation and incorporation in sedimentary mélanges (olistostromes): Examples from the northern Apennines (Italy) and northwestern Dinarides (Slovenia). Gondwana Research, 74, 101–125. https://doi.org/10.1016/j.gr.2019.03.001
  • Ogata, K., Storti, F., Balsamo, F., Tinterri, R., Bedogni, E., Fetter, M., Gomes, L., & Hatushika, R. (2016). Sedimentary facies control on mechanical and fracture stratigraphy in turbidites. GSA Bulletin. doi: https://doi.org/10.1130/B31517.1; Data Repository item 2016252
  • Panini, F., Bettelli, G., Pizziolo, M., Bonazzi, U., Capitani, M., Gasperi, G., Fioroni, C., & Fregni, P. (2002). Note illustrative alla Carta Geologica d’Italia a scala 1:50.000. Foglio 237 “Sasso Marconi”. S.EL.CA, Firenze. Servizio Geologico d’Italia/Regione Emilia-Romagna.
  • Pini, G. A. (1999). Tectonosomes and olistostromes in the argille scagliose of the northern Apennines, Italy: Geological Society of America Special Paper 335.
  • Principi, G., & Treves, B. (1984). - Il sistema corso-appenninico come prisma d’ accrezione. Riflessi sul problema generale del limite Alpi-Appennini. Memorie della Societa Geologica Italiana, 28, 549–576.
  • Remitti, F., Bettelli, G., Panini F., Carlini M., & Vannucchi P. (2012). Deformation, fluid flow, and mass trasfer in the forearc of convergent margins: A two-day field trip in an ancient and exhumed erosive convergent margin in the Northern Apennines. In P. Vannucchi & D. Fisher (Eds.), Deformation, Fluid flow, and mass transfer in the forearc of convergent margins: Field guides to the Northern Apennines in Emilia and in the Apuan Alps (Italy). The geological society of America field guide (Vol. 0028, pp. 1–34). https://doi.org/10.1130/2012.0028(01).
  • Remitti, F., Bettelli, G., & Vannucchi, P. (2007). - Internal structure and tectonic evolution of an underthrust tectonic mélange: The Sestola-Vidiciatico tectonic unit of the Northern Apennines, Italy. Geodinamica Acta, 20(1–2), 37–51. doi:10.3166/ga.20.37-51
  • Ricci Lucchi, F. (1975). Miocene paleogeography and basin analysis in the peri-Adriatic Apennines. In G. Squires (Ed.), Geology of Italy (vol. 2, 129–236). PELS-Tripoli
  • Ricci Lucchi, F. (1986). The Oligocene to recent foreland basins of the northern Apennines. In P. A. Allen & P. Homewood (Eds.), Foreland basins. International Association of Sedimentologists Special Publication (vol. 8, p. 103–139). Blackwell Publishing Ltd. https://doi.org/10.1002/9781444303810.ch6.
  • Ricci Lucchi, F., & Ori, G. G. (1985). Field excursion D: Syn-orogenic deposits of a migrating basin system in the NW adriatic Foreland. In P. H. Allen, P. Homewood, & G. Williams (Eds.), “Excursion Guidebook” (pp. 137–176). Foreland Basins Symp.
  • Roveri M., Ricci Lucchi F., Lucente C.C., Manzi V., & Mutti E. (2002). Stratigraphy, facies and basin fill history of the Marnoso-Arenacea formation. In E. Mutti, F. Ricci Lucchi & M. Roveri (Eds.), Revisiting turbidites of the Marnoso-arenacea Formation and their basin Margin equivalents: problems with classic models. 64th Eage Conference And Exhibition, Florence, Italy 27-30 May 2002, Excursion Guidebook, part III, p. III/1-III/15.
  • Tagliaferri, A., Tinterri, R., Pontiggia, M., Da Pra, A., Davoli, G., & Bonamini, E. (2018). Basin-scale, high-resolution three-dimensional facies modeling of tectonically confined turbidites: An example from the Firenzuola system (Marnoso-arenacea Formation, Northern Apennines, Italy). AAPG Bulletin, 102(8), 1601–1626. https://doi.org/10.1306/12081716521
  • Tinterri, R., & Tagliaferri, A. (2015). - The syntectonic evolution of foredeep turbidites related to basin segmentation: Facies response to the increase in tectonic confinement (Marnoso-arenacea formation, Miocene, Northern Apennines, Italy). Marine and Petroleum Geology, 67, 81–110. https://doi.org/10.1016/j.marpetgeo.2015.04.006
  • Vai, G. B., & Martini, I. P. (Eds.). (2001). Anatomy of an Orogen: The apennines and the adjacent mediterranean basins. Kluver Academic Publishers.
  • Vannucchi, P., & Bettelli, G. (2002). - Mechanisms of subduction accretion as implied from the broken formations in the Apennines, Italy. Geology, 30(9), 835–838. https://doi.org/10.1130/0091-7613(2002)030<0835:MOSAAI>2.0.CO;2
  • Vannucchi, P., Remitti, F., & Bettelli, G. (2008). Geological record of fluid flow and seismogenesis along an erosive subducting plate boundary. Nature, 451(7179), 699–703. doi:10.1038/nature06486
  • Vannucchi, P., Remitti, F., & Bettelli, G. (2012). Lateral variability of the erosive plate boundary in the Northern Apennines, Italy. Italian Journal of Geosciences, 131(2), 215–227. https://doi.org/10.3301/IJG.2012.11