4.1 Article

Geological map of Etna volcano, 1:50,000 scale

期刊

ITALIAN JOURNAL OF GEOSCIENCES
卷 130, 期 3, 页码 265-291

出版社

SOC GEOLOGICA ITALIANA
DOI: 10.3301/IJG.2011.15

关键词

Mount Etna; geological map; basaltic composite volcano; stratigraphy; UBU

资金

  1. Istituto Nazionale di Geofisica e Vulcanologia, Osservatorio Etneo, sezione di Catania
  2. CNR- Istituto per la Dinamica dei Processi Ambientali
  3. INGV Osservatorio Etneo
  4. CNR-IDPA
  5. Dipartimento per la Protezione Civile-INGV [V3_6 - Etna]
  6. FIRB Sviluppo Nuove Tecnologie per la Protezione e Difesa del Territorio dai Rischi Naturali
  7. APQ Estensione e Potenziamento dei Sistemi di Monitoraggio Vulcanico e Sismico delta Sicilia
  8. PRIN

向作者/读者索取更多资源

The new geological map of Etna volcano at 1:50,000 scale represents a significant progress in the geological studies of this volcano over the last 30 years, coming after Waltershausen's map published around the mid of 19(th) century, the first geological map of a large active volcano, and the ROMANO et alii (1979) map published about a century later, both at 1:50,000 scale. Lithostratigraphy was used for mapping volcanic units and then Unconformity Bounded Units were applied to group lithostratigraphic units into synthems. In addition, lithosomes were exploited to better represent the spatial localization of different eruptive centres according to their morphology. On the whole, we identified 27 lithostratigraphic units, grouped into 8 synthems, and 9 volcanoes. In detail, effusive and explosive deposits generated by each eruption of Mongibello and, partially, Ellittico volcanoes were mapped as flow rank. This stratigraphic framework represents the best synthesis of the geological evolution of Etna volcano using the main unconformities recognized within its complex volcanic succession. In addition, we constrain the Etna volcanic succession and its lithostratigraphic units chronologically by radioisotope age determinations. On the basis of the outlined synthemic units, it was possible to divide Etna's volcanic succession into 4 supersynthems, which correspond to 4 well-defined and spatially localized phases. The detailed reconstruction of the past eruptive activity allowed compiling the most accurate dataset in particular of the Holocene eruptions of Etna volcano, which will enable significantly improving the volcanic hazard assessment, together with petrological interpretation of erupted magmas and geophysical modelling of the volcano plumbing system.

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