Author
Listed:
- Ola Fredin
(Geological Survey of Norway
Norwegian University of Science and Technology)
- Giulio Viola
(Geological Survey of Norway
Norwegian University of Science and Technology
Present address: Department of Biological, Geological and Environmental Sciences - BiGeA, University of Bologna, 40126 Bologna, Italy)
- Horst Zwingmann
(Kyoto University, Kitashirakawa Oiwake-cho, 606-8502 Kyoto, Japan)
- Ronald Sørlie
(Lundin Petroleum AS)
- Marco Brönner
(Geological Survey of Norway
Norwegian University of Science and Technology)
- Jan-Erik Lie
(Lundin Petroleum AS)
- Else Margrethe Grandal
(Lundin Petroleum AS)
- Axel Müller
(Natural History Museum, University of Oslo
Natural History Museum)
- Annina Margreth
(Geological Survey of Norway)
- Christoph Vogt
(ZEKAM/FB5 Geowissenschaften, University of Bremen)
- Jochen Knies
(Geological Survey of Norway
CAGE - Centre for Arctic Gas Hydrate, Environment and Climate, University of Tromsø)
Abstract
In-situ weathered bedrock, saprolite, is locally found in Scandinavia, where it is commonly thought to represent pre-Pleistocene weathering possibly associated with landscape formation. The age of weathering, however, remains loosely constrained, which has an impact on existing geological and landscape evolution models and morphotectonic correlations. Here we provide new geochronological evidence that some of the low-altitude basement landforms on- and offshore southwestern Scandinavia are a rejuvenated geomorphological relic from Mesozoic times. K-Ar dating of authigenic, syn-weathering illite from saprolitic remnants constrains original basement exposure in the Late Triassic (221.3±7.0–206.2±4.2 Ma) through deep weathering in a warm climate and subsequent partial mobilization of the saprolitic mantle into the overlying sediment cascade system. The data support the bulk geomorphological development of west Scandinavia coastal basement rocks during the Mesozoic and later, long-lasting relative tectonic stability. Pleistocene glaciations played an additional geomorphological role, selectively stripping the landscape from the Mesozoic overburden and carving glacial landforms down to Plio–Pleistocene times. Saprolite K-Ar dating offers unprecedented possibilities to study past weathering and landscape evolution processes.
Suggested Citation
Ola Fredin & Giulio Viola & Horst Zwingmann & Ronald Sørlie & Marco Brönner & Jan-Erik Lie & Else Margrethe Grandal & Axel Müller & Annina Margreth & Christoph Vogt & Jochen Knies, 2017.
"The inheritance of a Mesozoic landscape in western Scandinavia,"
Nature Communications, Nature, vol. 8(1), pages 1-11, April.
Handle:
RePEc:nat:natcom:v:8:y:2017:i:1:d:10.1038_ncomms14879
DOI: 10.1038/ncomms14879
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