Floral evidence for high summer temperatures in southern Scandinavia during 15–11 cal ka BP
Autor: | Barbara Wohlfarth, Frederik Schenk, Minna Väliranta, Svante Björck, Ole Bennike, Rachael S. Avery |
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Přispěvatelé: | Helsinki Institute of Sustainability Science (HELSUS), Environmental Change Research Unit (ECRU), University Management, Ecosystems and Environment Research Programme |
Rok vydání: | 2020 |
Předmět: |
YOUNGER DRYAS
010506 paleontology Archeology 010504 meteorology & atmospheric sciences ICE-SHEET KYR BP 01 natural sciences ENVIRONMENTAL-CHANGE Paleoclimatology HOLOCENE Deglaciation RECONSTRUCTION Younger Dryas Stadial Summer temperatures 1172 Environmental sciences Ecology Evolution Behavior and Systematics Holocene 0105 earth and related environmental sciences NORTHERN EUROPE Global and Planetary Change geography geography.geographical_feature_category Hemiboreal Macrofossil Geology 15. Life on land CLIMATIC CHANGES LAKE 13. Climate action Climatology BALTIC SEA Scandinavia Ice sheet Plant macrofossils |
Zdroj: | Quaternary Science Reviews. 233:106243 |
ISSN: | 0277-3791 |
Popis: | The global climate transition from the Lateglacial to the Early Holocene is dominated by a rapid warming trend driven by an increase in orbital summer insolation over high northern latitudes and related feedbacks. The warming trend was interrupted by several abrupt shifts between colder (stadial) and warmer (interstadial) climate states following instabilities of the Atlantic Meridional Overturning Circulation (AMOC) in response to rapidly melting ice sheets. The sequence of abrupt shifts between extreme climate states had profound impacts on ecosystems which make it challenging to reliably quantify state variables like July temperatures within a non-analogue climate envelope. For Europe, there is increasing albeit inconclusive evidence for higher stadial summer temperatures than initially thought. Here we present a comprehensive floral compilation of plant macrofossils from lake sediment cores of 15 sites from S-Scandinavia covering the period similar to 15 to 11 ka BP. We find evidence for a continued presence of plant species indicating high July temperatures throughout the last deglaciation. The presence of hemiboreal plants in close vicinity to the southern margin of the Fennoscandian Ice Sheet implies a strong thermal summer forcing for the rapid ice sheet melt. Consistent with some recent studies, we do not find evidence for a general stadial summer cooling, which indicates that other reasons than summer temperatures caused drastic setbacks in proxy signals possibly driven by extreme winter cooling and/or shorter warm seasons. (C) 2020 The Authors. Published by Elsevier Ltd. |
Databáze: | OpenAIRE |
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