4.6 Article

A close-up view of the Permian-Triassic boundary based on expanded organic carbon isotope records from Norway (Trondelag and Finnmark Platform)

期刊

GLOBAL AND PLANETARY CHANGE
卷 74, 期 3-4, 页码 156-167

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ELSEVIER
DOI: 10.1016/j.gloplacha.2010.10.007

关键词

Permian-Triassic; organic carbon isotopes; particulate organic matter; Norway

资金

  1. Swiss NSF [200020-113554]

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High-resolution carbon isotope records of organic carbon (delta C-13(org)) across the Permian-Triassic boundary (PTB) from the expanded sections of the Trondelag and Finnmark platforms in Norway demonstrate that the negative carbon isotope excursion around the PTB begins with a stepwise 8 parts per thousand negative decline to a first minimum. After a subsequent positive excursion, a second minimum follows in the basal Griesbachian. Particulate organic matter (POM) is dominated by terrestrial particles with changing marine contributions. Intervals with minor C-isotope fluctuations coincide with homogeneous terrestrial POM assemblages, whereas intervals with pronounced C-isotope fluctuations correspond to heterogeneous marine-terrestrial POM assemblages, suggesting that the C-isotope curve represents a global signal with superimposed local variations of carbon sources. The delta C-13(org) of the contributing organic carbon ranges from -32 parts per thousand (marine organic carbon) to -22 parts per thousand (terrestrial organic carbon). Comparison of the new record, divided into 10 chemostratigraphic intervals with other, globally distributed sections suggests the presence of gaps in several classical PTB sections. Detailed chemostratigraphic correlation reveals that the extinction of marine organisms occurred during the stepwise negative shift and the end-Permian floral turnover occurred prior to the first C-isotope minimum. The correlation also shows that the marker of the recently defined Global Stratotype Section and Point PTB occurs within a broad interval ranging from most negative delta C-13 values up to the subsequent isotopic increase. (C) 2010 Elsevier B.V. All rights reserved.

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