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Hardground, gap and thin black shale: spatial heterogeneity of arrested carbonate sedimentation during the Jenkyns Event (T-OAE) in a Tethyan pelagic Basin (Gerecse Mts, Hungary)

  • Tamás Müller*
  • , Gregory D. Price
  • , Emanuela Mattioli
  • , Máté Zs Leskó
  • , Ferenc Kristály
  • , József Pálfy
  • *Corresponding author for this work
  • Eotvos Lorand University
  • Institute for Nuclear Research
  • Institut universitaire de France
  • Universite Claude Bernard Lyon 1
  • University of Miskolc

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Abstract

<jats:title>Abstract</jats:title><jats:p>The Jenkyns Event or Toarcian Oceanic Anoxic Event was an episode of severe environmental perturbations reflected in carbon isotope and other geochemical anomalies. Although well studied in the epicontinental basins in NW Europe, its effects are less understood in open marine environments. Here we present new geochemical (carbon isotope, CaCO<jats:sub>3</jats:sub>, [Mn]) and nannofossil biostratigraphic data from the Tölgyhát and Kisgerecse sections in the Gerecse Hills (Hungary). These sections record pelagic carbonate sedimentation near the margin of the Tethys Ocean. A negative carbon isotope excursion of <jats:italic>c.</jats:italic> 6‰ is observed in the Tölgyhát section, in a condensed clay and black shale layer where the CaCO<jats:sub>3</jats:sub> content drops in association with the Jenkyns Event. At Kisgerecse, bio- and chemostratigraphic data suggest a gap in the lower Toarcian. The presence of an uppermost Pliensbachian hardground, the absence of the lowermost Toarcian Tenuicostatum ammonite zone and the condensed record of the Jenkyns Event at Tölgyhát, together with a condensed Tenuicostatum Zone and the missing negative carbon isotope anomaly at Kisgerecse, imply arrested carbonate sedimentation. A calcification crisis and sea-level rise together led to a decrease in carbonate production and terrigenous input, suggesting that volcanogenic CO<jats:sub>2</jats:sub>-driven global warming may have been their common cause.</jats:p>
Original languageEnglish
Pages (from-to)269-289
Number of pages0
JournalGeological Society, London, Special Publications
Volume514
Issue number1
Early online date21 May 2021
DOIs
Publication statusPublished - 21 May 2021

UN SDGs

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  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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