Sina Panitz
Spatio-temporal dynamics of speleothem growth and glaciation in the British Isles
Panitz, Sina; Rogerson, Michael; Longman, Jack; Scroxton, Nick; Lawson, Tim J.; Atkinson, Tim C.; Ersek, Vasile; Baldini, James; Baldini, Lisa; Umbo, Stuart; Lone, Mahjoor A.; Henderson, Gideon M.; Breitenbach, Sebastian F.M.
Authors
Michael Rogerson
Jack Longman
Nick Scroxton
Tim J. Lawson
Tim C. Atkinson
Vasile Ersek
Professor James Baldini james.baldini@durham.ac.uk
Professor
Lisa Baldini
Stuart Umbo
Mahjoor A. Lone
Gideon M. Henderson
Sebastian F.M. Breitenbach
Abstract
Reconstructing the spatio-temporal dynamics of glaciations and permafrost largely relies on surface deposits and is therefore a challenge for every glacial period older than the last due to erosion. Consequently, glaciations and permafrost remain poorly constrained worldwide before ca. 30 ka. Since speleothems (carbonate cave deposits) form from drip water and generally indicate the absence of an ice sheet and permafrost, we evaluate how speleothem growth phases defined by U series dates align with past glacial–interglacial cycles. Further, we make the first systematic comparison of the spatial distribution of speleothem dates with independent reconstructions of the history of the British–Irish Ice Sheet (BIIS) to test how well geomorphologic ice reconstructions are replicated in the cave record. The frequency distribution of 1020 U series dates based on three different dating methods between 300 and 5 ka shows statistically significant periods of speleothem growth during the last interglacial and several interstadials during the last glacial. A pronounced decline in speleothem growth coincides with the Last Glacial Maximum before broad reactivation during deglaciation and into the Holocene. Spatio-temporal patterns in speleothem growth between 31 and 15 ka agree well with the surface-deposit-based reconstruction of the last BIIS. In data-rich regions, such as northern England, ice dynamics are well replicated in the cave record, which provide additional evidence about the spatio-temporal distribution of permafrost dynamics. Beyond the Last Glacial Maximum, the distribution of speleothem dates across the British Isles offers the opportunity to improve chronological constraints on past ice sheet variability, with evidence for a highly dynamic Scottish ice sheet during the last glacial. The results provide independent evidence of ice distribution complementary to studies of surface geomorphology and geology, and the potential to extend reconstructions into permafrost and earlier glacial cycles. Whilst undersampling is currently the main limitation for speleothem-based ice and permafrost reconstruction even in relatively well-sampled parts of the British Isles, we show that speleothem dates obtained using modern mass spectrometry techniques reveal a higher spatio-temporal resolution of glacial–interglacial cycles and glacial extent than previously possible. Further study of leads and lags in speleothem growth compared to surface deposition may provide new insights into landscape-scale dynamics during ice sheet growth and retreat.
Citation
Panitz, S., Rogerson, M., Longman, J., Scroxton, N., Lawson, T. J., Atkinson, T. C., Ersek, V., Baldini, J., Baldini, L., Umbo, S., Lone, M. A., Henderson, G. M., & Breitenbach, S. F. (2025). Spatio-temporal dynamics of speleothem growth and glaciation in the British Isles. Climate of the Past, 21(1), 261-278. https://doi.org/10.5194/cp-21-261-2025
Journal Article Type | Article |
---|---|
Acceptance Date | Nov 25, 2024 |
Online Publication Date | Jan 29, 2025 |
Publication Date | Jan 29, 2025 |
Deposit Date | Mar 19, 2025 |
Publicly Available Date | Mar 19, 2025 |
Journal | Climate of the Past |
Print ISSN | 1814-9324 |
Electronic ISSN | 1814-9332 |
Publisher | European Geosciences Union |
Peer Reviewed | Peer Reviewed |
Volume | 21 |
Issue | 1 |
Pages | 261-278 |
DOI | https://doi.org/10.5194/cp-21-261-2025 |
Public URL | https://durham-repository.worktribe.com/output/3719142 |
Files
Published Journal Article
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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/
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