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High-resolution carbon isotope chemostratigraphy of the middle Cambrian to lowermost Ordovician in southern Scandinavia : Implications for global correlation

Zhao, Zhengfu ; Ahlberg, Per LU ; Thibault, Nicolas ; Dahl, Tais W. ; Schovsbo, Niels H. and Nielsen, Arne T. (2022) In Global and Planetary Change 209.
Abstract

Continuous and biostratigraphically well-constrained carbon isotope (δ13Corg) profiles through the upper Miaolingian (middle Cambrian) to Tremadocian (Lower Ordovician) part of the Alum Shale Formation in four drill cores from southernmost Scandinavia are described. The sections record seven Furongian (upper Cambrian) excursions/spikes, of which three appear valuable as auxiliary markers for identifying global stage boundaries. The Steptoean Positive Carbon Isotope Excursion (SPICE) event with a magnitude of up to 2.8‰ is located mainly within the Olenus Superzone. The onset, as specified here, coincides with the end-Marjuman extinction and is marked by a minor negative excursion (up to −1.6‰) right below the... (More)

Continuous and biostratigraphically well-constrained carbon isotope (δ13Corg) profiles through the upper Miaolingian (middle Cambrian) to Tremadocian (Lower Ordovician) part of the Alum Shale Formation in four drill cores from southernmost Scandinavia are described. The sections record seven Furongian (upper Cambrian) excursions/spikes, of which three appear valuable as auxiliary markers for identifying global stage boundaries. The Steptoean Positive Carbon Isotope Excursion (SPICE) event with a magnitude of up to 2.8‰ is located mainly within the Olenus Superzone. The onset, as specified here, coincides with the end-Marjuman extinction and is marked by a minor negative excursion (up to −1.6‰) right below the Miaolingian–Furongian boundary. The end of the SPICE event approximates the upper boundary of the Olenus Superzone and has potential for correlation of the Paibian–Jiangshanian boundary. The Top of Cambrian Excursion (TOCE) with a magnitude of about −1.6‰ straddles the Parabolina lobata–Parabolina heres megalops zonal boundary in Baltoscandia. This chemostratigraphic excursion, considered as a synonym of the Hellnmaria-Red Tops Boundary excursion (HERB), represents a secondary marker for correlating the base of Stage 10, if defined by the FAD of Eoconodontus notchpeakensis. A positive spike at the Cambrian–Ordovician boundary, here named COBS, recognized in the stratotype section at Green Point (Canada; δ13Ccarb magnitude +5.3‰), Scandinavia (δ13Corg magnitude up to +2.2‰) and elsewhere, appears as a valuable supplementary marker for recognizing this important boundary. The described δ13Corg profile from the Albjära-1 core provides a standard reference for Furongian carbon isotope chemostratigraphy in Baltica, refines the correlation between Baltica and other palaeocontinents, and indicates new possibilities for pinpointing international stage boundaries within the Furongian based on carbon isotope records.

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organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Alum Shale, Baltica, Furongian, Global correlation, High-resolution δC chemostratigraphy
in
Global and Planetary Change
volume
209
article number
103751
publisher
Elsevier
external identifiers
  • scopus:85123742261
ISSN
0921-8181
DOI
10.1016/j.gloplacha.2022.103751
language
English
LU publication?
yes
additional info
Publisher Copyright: © 2022 The Authors
id
8e135b1f-f5d9-402a-a779-875af5df7371
date added to LUP
2022-02-15 17:10:52
date last changed
2022-04-25 22:03:38
@article{8e135b1f-f5d9-402a-a779-875af5df7371,
  abstract     = {{<p>Continuous and biostratigraphically well-constrained carbon isotope (δ<sup>13</sup>C<sub>org</sub>) profiles through the upper Miaolingian (middle Cambrian) to Tremadocian (Lower Ordovician) part of the Alum Shale Formation in four drill cores from southernmost Scandinavia are described. The sections record seven Furongian (upper Cambrian) excursions/spikes, of which three appear valuable as auxiliary markers for identifying global stage boundaries. The Steptoean Positive Carbon Isotope Excursion (SPICE) event with a magnitude of up to 2.8‰ is located mainly within the Olenus Superzone. The onset, as specified here, coincides with the end-Marjuman extinction and is marked by a minor negative excursion (up to −1.6‰) right below the Miaolingian–Furongian boundary. The end of the SPICE event approximates the upper boundary of the Olenus Superzone and has potential for correlation of the Paibian–Jiangshanian boundary. The Top of Cambrian Excursion (TOCE) with a magnitude of about −1.6‰ straddles the Parabolina lobata–Parabolina heres megalops zonal boundary in Baltoscandia. This chemostratigraphic excursion, considered as a synonym of the Hellnmaria-Red Tops Boundary excursion (HERB), represents a secondary marker for correlating the base of Stage 10, if defined by the FAD of Eoconodontus notchpeakensis. A positive spike at the Cambrian–Ordovician boundary, here named COBS, recognized in the stratotype section at Green Point (Canada; δ<sup>13</sup>C<sub>carb</sub> magnitude +5.3‰), Scandinavia (δ<sup>13</sup>C<sub>org</sub> magnitude up to +2.2‰) and elsewhere, appears as a valuable supplementary marker for recognizing this important boundary. The described δ<sup>13</sup>C<sub>org</sub> profile from the Albjära-1 core provides a standard reference for Furongian carbon isotope chemostratigraphy in Baltica, refines the correlation between Baltica and other palaeocontinents, and indicates new possibilities for pinpointing international stage boundaries within the Furongian based on carbon isotope records.</p>}},
  author       = {{Zhao, Zhengfu and Ahlberg, Per and Thibault, Nicolas and Dahl, Tais W. and Schovsbo, Niels H. and Nielsen, Arne T.}},
  issn         = {{0921-8181}},
  keywords     = {{Alum Shale; Baltica; Furongian; Global correlation; High-resolution δC chemostratigraphy}},
  language     = {{eng}},
  publisher    = {{Elsevier}},
  series       = {{Global and Planetary Change}},
  title        = {{High-resolution carbon isotope chemostratigraphy of the middle Cambrian to lowermost Ordovician in southern Scandinavia : Implications for global correlation}},
  url          = {{http://dx.doi.org/10.1016/j.gloplacha.2022.103751}},
  doi          = {{10.1016/j.gloplacha.2022.103751}},
  volume       = {{209}},
  year         = {{2022}},
}