The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations

The Neoproterozoic sediments in East Greenland are found in an N-S trending belt in the Fjord Region. Overlying the Eleonora Bay Supergroup is the Tillite Group, which for long has been interpreted as a series of glacially derived deposits including two diamictitic units. The Tillite Group itself is...

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Main Authors: Buchardt, Bjørn, Kristiansen, Kasper K., Houmark-Nielsen, Michael
Format: Conference Object
Language:English
Published: 2008
Subjects:
Online Access:https://curis.ku.dk/portal/da/publications/the-neoproterozoic-tillite-group-from-ella-oe-east-greenland(34c0ad70-c5e8-11dd-9473-000ea68e967b).html
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spelling ftcopenhagenunip:oai:pure.atira.dk:publications/34c0ad70-c5e8-11dd-9473-000ea68e967b 2023-06-18T03:40:26+02:00 The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations Buchardt, Bjørn Kristiansen, Kasper K. Houmark-Nielsen, Michael 2008 https://curis.ku.dk/portal/da/publications/the-neoproterozoic-tillite-group-from-ella-oe-east-greenland(34c0ad70-c5e8-11dd-9473-000ea68e967b).html eng eng info:eu-repo/semantics/restrictedAccess Buchardt , B , Kristiansen , K K & Houmark-Nielsen , M 2008 , ' The Neoproterozoic Tillite Group from Ella Ø, East Greenland : carbon isotope signatures and correlations ' , The 33rd International Geological Congress , Oslo , Norway , 06/08/2008 - 14/08/2008 . /dk/atira/pure/core/keywords/TheFacultyOfScience Faculty of Science øst Grønland Carbon isotopes East Greenland Ella Ø Proterozoic glaciations conferenceObject 2008 ftcopenhagenunip 2023-06-07T23:49:07Z The Neoproterozoic sediments in East Greenland are found in an N-S trending belt in the Fjord Region. Overlying the Eleonora Bay Supergroup is the Tillite Group, which for long has been interpreted as a series of glacially derived deposits including two diamictitic units. The Tillite Group itself is disconformably overlain by sediments of Cambrian age. Fieldwork by us on Ella Ø has questioned the glacial origin of at least the lower diamictitic unit (Ulvesø Fm), while the upper unit (Storeelv Fm) shows unequivocal evidence of glacial activities at the base. On Ella Ø, the thickness of the Tillite Group is ~1200 m. The Ulvesø Fm rests conformably on shales and stromatolithic calcareous rocks of suggested warm water origin, and the Storeelv Fm is conformably overlain by clastic rocks showing pseudomorphoses after halite in the uppermost unit. The two diamictitic units are separated by the ~250 m thick Area Fm consisting of organic-rich black shales and fine-grained sandstones. The age of the Tillite Group has not been established with certainty, but an Ediacaran age has been suggested. Based on correlations to similar deposits on Svalbard the lower Ulvesø Fm has been assigned a Sturtian age while the Storeelv should be of Marinoan age. We have performed carbon isotope analyses of carbonates and organic carbon throughout the Tillite Group at Ella Ø and from the uppermost 600 m of underlying carbonates (Bed Group 18) and shales (Bed group 19) of the Eleonora Bay Supergroup. The carbon isotope compositions of the stromatolithic carbonates of Bed Group 18 are significantly enriched compared to modern values with a mean of +7‰ V-PDB. The shift from calcareous rocks of Bed Group 18 to shaly and cherty sediments of Bed Group 19 is accompanied by a negative shift in d 13 C of more that 15‰, and average values of carbonates in Bed Group 19 are close to -10‰. Organic carbon from Bed Group 19 has d 13 C values close to -34‰ indicating a carbonate to organic carbon fractionation of ~25‰ similar to present-day conditions. ... Conference Object East Greenland Greenland Grønland Svalbard University of Copenhagen: Research Ella Ø ENVELOPE(-25.056,-25.056,72.848,72.848) Greenland Svalbard
institution Open Polar
collection University of Copenhagen: Research
op_collection_id ftcopenhagenunip
language English
topic /dk/atira/pure/core/keywords/TheFacultyOfScience
Faculty of Science
øst Grønland
Carbon isotopes
East Greenland
Ella Ø
Proterozoic glaciations
spellingShingle /dk/atira/pure/core/keywords/TheFacultyOfScience
Faculty of Science
øst Grønland
Carbon isotopes
East Greenland
Ella Ø
Proterozoic glaciations
Buchardt, Bjørn
Kristiansen, Kasper K.
Houmark-Nielsen, Michael
The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
topic_facet /dk/atira/pure/core/keywords/TheFacultyOfScience
Faculty of Science
øst Grønland
Carbon isotopes
East Greenland
Ella Ø
Proterozoic glaciations
description The Neoproterozoic sediments in East Greenland are found in an N-S trending belt in the Fjord Region. Overlying the Eleonora Bay Supergroup is the Tillite Group, which for long has been interpreted as a series of glacially derived deposits including two diamictitic units. The Tillite Group itself is disconformably overlain by sediments of Cambrian age. Fieldwork by us on Ella Ø has questioned the glacial origin of at least the lower diamictitic unit (Ulvesø Fm), while the upper unit (Storeelv Fm) shows unequivocal evidence of glacial activities at the base. On Ella Ø, the thickness of the Tillite Group is ~1200 m. The Ulvesø Fm rests conformably on shales and stromatolithic calcareous rocks of suggested warm water origin, and the Storeelv Fm is conformably overlain by clastic rocks showing pseudomorphoses after halite in the uppermost unit. The two diamictitic units are separated by the ~250 m thick Area Fm consisting of organic-rich black shales and fine-grained sandstones. The age of the Tillite Group has not been established with certainty, but an Ediacaran age has been suggested. Based on correlations to similar deposits on Svalbard the lower Ulvesø Fm has been assigned a Sturtian age while the Storeelv should be of Marinoan age. We have performed carbon isotope analyses of carbonates and organic carbon throughout the Tillite Group at Ella Ø and from the uppermost 600 m of underlying carbonates (Bed Group 18) and shales (Bed group 19) of the Eleonora Bay Supergroup. The carbon isotope compositions of the stromatolithic carbonates of Bed Group 18 are significantly enriched compared to modern values with a mean of +7‰ V-PDB. The shift from calcareous rocks of Bed Group 18 to shaly and cherty sediments of Bed Group 19 is accompanied by a negative shift in d 13 C of more that 15‰, and average values of carbonates in Bed Group 19 are close to -10‰. Organic carbon from Bed Group 19 has d 13 C values close to -34‰ indicating a carbonate to organic carbon fractionation of ~25‰ similar to present-day conditions. ...
format Conference Object
author Buchardt, Bjørn
Kristiansen, Kasper K.
Houmark-Nielsen, Michael
author_facet Buchardt, Bjørn
Kristiansen, Kasper K.
Houmark-Nielsen, Michael
author_sort Buchardt, Bjørn
title The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
title_short The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
title_full The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
title_fullStr The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
title_full_unstemmed The Neoproterozoic Tillite Group from Ella Ø, East Greenland:carbon isotope signatures and correlations
title_sort neoproterozoic tillite group from ella ø, east greenland:carbon isotope signatures and correlations
publishDate 2008
url https://curis.ku.dk/portal/da/publications/the-neoproterozoic-tillite-group-from-ella-oe-east-greenland(34c0ad70-c5e8-11dd-9473-000ea68e967b).html
long_lat ENVELOPE(-25.056,-25.056,72.848,72.848)
geographic Ella Ø
Greenland
Svalbard
geographic_facet Ella Ø
Greenland
Svalbard
genre East Greenland
Greenland
Grønland
Svalbard
genre_facet East Greenland
Greenland
Grønland
Svalbard
op_source Buchardt , B , Kristiansen , K K & Houmark-Nielsen , M 2008 , ' The Neoproterozoic Tillite Group from Ella Ø, East Greenland : carbon isotope signatures and correlations ' , The 33rd International Geological Congress , Oslo , Norway , 06/08/2008 - 14/08/2008 .
op_rights info:eu-repo/semantics/restrictedAccess
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