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d(13)C chemostratigraphy in the Lower-Middle Ordovician succession of Oland (Sweden) and the global significance of the MDICE

Calner, Mikael LU orcid ; Lehnert, Oliver LU ; Wu, Rongchang LU ; Dahlqvist, Peter and Joachimski, Michael M. (2014) In GFF 136(1). p.48-54
Abstract
Based on the Tingskullen drillcore, we present the first continuous carbon isotope stratigraphy from the Lower-Middle Ordovician orthoceratite limestone of oland, Sweden. The extremely condensed Tremadocian and Floian stages include large gaps as well as the Ceratopyge Regressive Event and the widespread Evae transgression accompanied by prominent shifts in the C-13 record. The Dapingian and Darriwilian stages are characterised by low sedimentation rates and a relatively complete sedimentary record. A total of 99 whole-rock samples were analysed for carbon isotope geochemistry from the Ordovician part of the succession (46m thick). The most striking anomaly detected is the middle Darriwilian isotope carbon excursion (MDICE) that appears... (More)
Based on the Tingskullen drillcore, we present the first continuous carbon isotope stratigraphy from the Lower-Middle Ordovician orthoceratite limestone of oland, Sweden. The extremely condensed Tremadocian and Floian stages include large gaps as well as the Ceratopyge Regressive Event and the widespread Evae transgression accompanied by prominent shifts in the C-13 record. The Dapingian and Darriwilian stages are characterised by low sedimentation rates and a relatively complete sedimentary record. A total of 99 whole-rock samples were analysed for carbon isotope geochemistry from the Ordovician part of the succession (46m thick). The most striking anomaly detected is the middle Darriwilian isotope carbon excursion (MDICE) that appears unusually well developed and complete for the region, and thus forms an important proxy for intercontinental correlation of the succession. (Less)
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author
; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Ordovician, Sweden, CRE, Evae transgression, MDICE
in
GFF
volume
136
issue
1
pages
48 - 54
publisher
Taylor & Francis
external identifiers
  • wos:000335945500011
  • scopus:84901198318
ISSN
2000-0863
DOI
10.1080/11035897.2014.901409
language
English
LU publication?
yes
id
841c5a86-b3c8-4754-ad77-5f6a025de013 (old id 4559586)
date added to LUP
2016-04-01 11:07:38
date last changed
2023-01-02 18:55:39
@article{841c5a86-b3c8-4754-ad77-5f6a025de013,
  abstract     = {{Based on the Tingskullen drillcore, we present the first continuous carbon isotope stratigraphy from the Lower-Middle Ordovician orthoceratite limestone of oland, Sweden. The extremely condensed Tremadocian and Floian stages include large gaps as well as the Ceratopyge Regressive Event and the widespread Evae transgression accompanied by prominent shifts in the C-13 record. The Dapingian and Darriwilian stages are characterised by low sedimentation rates and a relatively complete sedimentary record. A total of 99 whole-rock samples were analysed for carbon isotope geochemistry from the Ordovician part of the succession (46m thick). The most striking anomaly detected is the middle Darriwilian isotope carbon excursion (MDICE) that appears unusually well developed and complete for the region, and thus forms an important proxy for intercontinental correlation of the succession.}},
  author       = {{Calner, Mikael and Lehnert, Oliver and Wu, Rongchang and Dahlqvist, Peter and Joachimski, Michael M.}},
  issn         = {{2000-0863}},
  keywords     = {{Ordovician; Sweden; CRE; Evae transgression; MDICE}},
  language     = {{eng}},
  number       = {{1}},
  pages        = {{48--54}},
  publisher    = {{Taylor & Francis}},
  series       = {{GFF}},
  title        = {{d(13)C chemostratigraphy in the Lower-Middle Ordovician succession of Oland (Sweden) and the global significance of the MDICE}},
  url          = {{http://dx.doi.org/10.1080/11035897.2014.901409}},
  doi          = {{10.1080/11035897.2014.901409}},
  volume       = {{136}},
  year         = {{2014}},
}