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  5. Integrated stratigraphic reconstruction for the last 80 kyr in a deep sector of the Sardinia Channel (Western Mediterranean)
 
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Integrated stratigraphic reconstruction for the last 80 kyr in a deep sector of the Sardinia Channel (Western Mediterranean)

Author(s)
Budillon, F.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Lirer, F.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Iorio, M.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Macrì, P.  
Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia  
Sagnotti, L.  
Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia  
Vallefuoco, M.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Ferraro, L.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Garziglia, S.  
Géosciences-Azur, CNRS, BP 48, Fr-06235, Villefranche sur Mer, France  
Innangi, S.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Sahabi, M.  
Faculté des Sciences, BP 20, 24000 El Jadida, Morocco  
Tonielli, R.  
Istituto per l’ Ambiente Marino Costiero, IAMC, Consiglio Nazionale delle Ricerche, Calata Porta di Massa 80, I-80133 Napoli, Italy  
Language
English
Obiettivo Specifico
2.2. Laboratorio di paleomagnetismo
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Deep-Sea Research II  
Issue/vol(year)
11-12 / 56 (2009)
Publisher
Elsevier
Pages (printed)
725 - 737
Date Issued
May 2009
DOI
10.1016/j.dsr2.2008.07.026
Last version
http://hdl.handle.net/2122/5032
URI
https://www.earth-prints.org/handle/2122/5116
Subjects
04. Solid Earth::04.04. Geology::04.04.04. Marine geology  
04. Solid Earth::04.04. Geology::04.04.08. Sediments: dating, processes, transport  
04. Solid Earth::04.04. Geology::04.04.10. Stratigraphy  
04. Solid Earth::04.05. Geomagnetism::04.05.06. Paleomagnetism  
Subjects

Integrated stratigrap...

Late Neogene marine r...

Eco-bio-events

Reflectance 550 nm %

Sardinia Channel

Western Mediterranean...

Abstract
A quantitative analysis of planktonic foraminifera, coupled with petrophysical and paleomagnetic measurements and 14C AMS calibrations, was carried out on a deep core recovered in the Sardinia Channel (Western Mediterranean Sea), during the CIESM Sub2 survey, providing an integrated stratigraphic time-framework over the last 80 kyr. Significant changes in the quantitative distribution of planktonic foraminifera allowed the identification of several eco-bioevents useful to accurately mark the boundaries of the eco-biozones widely recognised in the Western Mediterranean records and used for large scale correlations. Namely, 10 eco-biozones were identified based on the relative abundance of selected climate sensitive planktonic foraminiferal species. Sixteen codified eco-bioevents were correlated with the Alboran Sea planktonic foraminiferal data and four climatic global events (Sapropel S1, Younger Dryas, Greenland Isotope Interstadial 1, Greenland Isotope Stadial 2, Heinrich event H1-H6) were recognized. The eco-bioevents together with the 14C AMS calibrations allowed us to define an accurate age model, spanning between 2 and 83 kyr. The reliability of the age model was confirmed by comparing the colour reflectance (550 nm%) data of the studied record with the astronomically tuned record from the Ionian sea (ODP-Site 964). A mean sedimentation rate of about 7 cm/kyr included three turbidite event beds that were chronologically constrained within the relative low stand and lowering sea level phases of the MIS 4 and 3. The deep-sea sedimentary record includes a distinct tephra occurring at the base of the core which dates 78 ka cal. BP. The paleomagnetic data provide a well-defined record of the characteristic remanent magnetization that may be used to reconstruct the geomagnetic paleosecular variation for the Mediterranean back to 83 kyr.
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