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Diverse temperate rainforests near the South Pole during peak Cretaceous greenhouse warmth

Authors :
Klages, Johann Philipp
Salzmann, Ulrich
Bickert, Torsten
Hillenbrand, Claus-Dieter
Gohl, Karsten
Kuhn, Gerhard
Bohaty, Steve
Titschack, Jürgen
Müller, Juliane
Frederichs, Thomas
Bauersachs, Thorsten
Ehrmann, Werner
van de Flierdt, Tina
Simoes Pereira, Patric
Larter, Robert D.
Lohmann, Gerrit
Niezgodzki, Igor
Uenzelmann-Neben, Gabriele
Zundel, Maximilian
Spiegel, Cornelia
Mark, Chris
Chew, David
Francis, Jane E
Nehrke, Gernot
Schwarz, Florian
Smith, James A.
Freudenthal, Tim
Esper, Oliver
Pälike, Heiko
Ronge, Thomas
Dziadek, Ricarda
Klages, Johann Philipp
Salzmann, Ulrich
Bickert, Torsten
Hillenbrand, Claus-Dieter
Gohl, Karsten
Kuhn, Gerhard
Bohaty, Steve
Titschack, Jürgen
Müller, Juliane
Frederichs, Thomas
Bauersachs, Thorsten
Ehrmann, Werner
van de Flierdt, Tina
Simoes Pereira, Patric
Larter, Robert D.
Lohmann, Gerrit
Niezgodzki, Igor
Uenzelmann-Neben, Gabriele
Zundel, Maximilian
Spiegel, Cornelia
Mark, Chris
Chew, David
Francis, Jane E
Nehrke, Gernot
Schwarz, Florian
Smith, James A.
Freudenthal, Tim
Esper, Oliver
Pälike, Heiko
Ronge, Thomas
Dziadek, Ricarda
Source :
EPIC3AGU Fall Meeting, San Francisco, USA, 2019-12-08-2019-12-14
Publication Year :
2019

Abstract

The mid-Cretaceous was one of the warmest intervals of the past 140 million years (Myr) driven by atmospheric CO2 levels around 1000 ppmv. In the near absence of proximal geological records from south of the Antarctic Circle, it remains disputed whether polar ice could exist under such environmental conditions. Here we present results from a unique sedimentary sequence recovered from the West Antarctic shelf. This by far southernmost Cretaceous record contains an intact ~3 m-long network of in-situ fossil roots. The roots are embedded in a mudstone matrix bearing diverse pollen and spores, indicative of a temperate lowland rainforest environment at a palaeolatitude of ~82°S during the Turonian–Santonian (92–83 Myr). A climate model simulation shows that the reconstructed temperate climate at this high latitude requires a combination of both atmospheric CO2 contents of 1120–1680 ppmv and a vegetated land surface without major Antarctic glaciation, highlighting the important cooling effect exerted by ice albedo in high-CO2 climate worlds.

Details

Database :
OAIster
Journal :
EPIC3AGU Fall Meeting, San Francisco, USA, 2019-12-08-2019-12-14
Publication Type :
Electronic Resource
Accession number :
edsoai.on1137417218
Document Type :
Electronic Resource