Stratigraphy of the Cretaceous/Paleogene (K/Pg) boundary at the Global Stratotype Section and Point (GSSP) in El Kef, Tunisia: New insights from the El Kef Coring Project

Author:

Jones Heather L.12,Westerhold Thomas1,Birch Heather3,Hull Pincelli4,Hédi Negra M.5,Röhl Ursula1,Sepúlveda Julio6,Vellekoop Johan78,Whiteside Jessica H.9,Alegret Laia10,Henehan Michael11,Robinson Libby9,van Dijk Joep67,Bralower Timothy2

Affiliation:

1. 1MARUM−Center for Marine Environmental Sciences, University of Bremen, 28359 Bremen, Germany

2. 2Department of Geosciences, Pennsylvania State University, University Park, Pennsylvania 16802, USA

3. 3School of Earth Sciences, University of Bristol, Bristol BS8 1RJ, UK

4. 4Department of Geology and Geophysics, Yale University, 210 Whitney Avenue, New Haven, Connecticut 06511, USA

5. 5Faculty of Sciences of Tunis, University of Tunis El Manar, 2092 Tunis, Tunisia

6. 6Department of Geological Sciences and Institute of Arctic and Alpine Research (INSTAAR), University of Colorado Boulder, UCB 450, Boulder, Colorado 80309-0450, USA

7. 7Analytical, Environmental, and Geo-Chemistry, Vrije Universiteit Brussel, B-1050 Brussels, Belgium

8. 8Department of Earth and Environmental Sciences, KU Leuven, 3000 Leuven, Belgium

9. 9National Oceanography Centre Southampton, University of Southampton, Waterfront Campus, European Way, Southampton SO14 3ZH, UK

10. 10Departamento de Ciencias de la Tierra & Instituto Universitario de Ciencias Ambientales, Universidad Zaragoza, 50009 Zaragoza, Spain

11. 11GFZ German Research Centre for Geosciences, Telegrafenberg, 14473 Potsdam, Germany

Abstract

The Cretaceous/Paleogene (K/Pg) boundary is marked by one of the largest mass extinctions in Earth’s history, with geological evidence for this event being expressed in hundreds of locations worldwide. An extensively studied section located near El Kef, northwestern Tunisia, is characterized by the classic iridium-rich K/Pg boundary layer, abundant and well-preserved microfossils, and apparently continuous sedimentation throughout the early Danian with no previously described structural complication. These features led to its designation in 1991 as the Global Stratigraphic Section and Point (GSSP) for the base of the Danian (i.e., the K/Pg boundary). However, the outcrop section has become weathered, and the “golden spike” marking the GSSP is difficult to locate. Therefore, the El Kef Coring Project aimed to provide a continuous record of unweathered sediments across the K/Pg transition in cores recovered from five rotary-drilled holes located close to the El Kef GSSP. Here, we present new, high-resolution lithologic, biostratigraphic, and geochemical data from these cores. The recovered stratigraphic successions of each hole (all drilled within ∼75 m of one another) are unexpectedly different, and we identified a formerly unknown unconformity within planktic foraminiferal biozone P1b. Our results provide evidence that sedimentation at El Kef was not as continuous or free from structural complication as previously thought. Despite these challenges, we present a new composite section from the five El Kef holes and an age model correlated to the orbitally tuned record at Walvis Ridge, South Atlantic Ocean, which is critical in placing the paleoenvironmental and paleoecological records from El Kef in a global context.

Publisher

Geological Society of America

Subject

Geology

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