4.6 Article

Correlating Mediterranean shallow water deposits with global Oligocene-Miocene stratigraphy and oceanic events

Journal

GLOBAL AND PLANETARY CHANGE
Volume 111, Issue -, Pages 226-236

Publisher

ELSEVIER
DOI: 10.1016/j.gloplacha.2013.09.018

Keywords

shallow-marine carbonates; stratigraphic correlation; paleoceanographic events; Oligocene-Miocene; Maiella Platform; Mediterranean Sea

Funding

  1. FWF [P-23492-B17]

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Shallow-marine sediment records have the strong potential to display sensitive environmental changes in sedimentary geometries and skeletal content. However, the time resolution of most neritic carbonate records is not high enough to be compared with climatic events as recorded in the deep-sea sediment archives. In order to resolve the paleoceanographic and paleoclimatic changes during the Oligocene-Miocene transition in the Mediterranean shallow water carbonate systems with the best possible time resolution, we re-evaluated the Decontra section on the Maiella Platform (central Apennines, Italy), which acts as a reference for the correlation of Oligocene-Miocene shallow water deposits in the Mediterranean region. The 120-m-thick late Oligocenelate Miocene carbonate succession is composed of larger foraminiferal, bryozoan and corallinacean limestones interlayered with distinct planktonic foraminiferal carbonates representing a mostly outer neritic setting. Integrated multi-proxy and facies analyses indicate that CaCO3 and total organic carbon contents as well as gamma-ray display only local to regional processes on the carbonate platform and are not suited for stratigraphic correlation on a wider scale. In contrast, new biostratigraphic data correlate the Decontra stable carbon isotope record to the global deep-sea carbon isotope record. This links relative sea level fluctuations, which are reflected by fades and magnetic susceptibility changes, to third-order eustatic cycles. The new integrated bio-, chemo-, and sequence stratigraphic framework enables a more precise timing of environmental changes within the studied time interval and identifies Decontra as an important locality for correlating not only shallow and deep water sediments of the Mediterranean region but also on a global scale. (C) 2013 The Authors. Published by Elsevier B.V. All rights reserved.

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