The Eocene-Oligocene boundary climate transition: An Antarctic perspective

Publication date

2021

Authors

Galeotti, Simone
Bijl, P.K.ORCID 0000-0002-1710-4012ISNI 0000000394379738
Brinkhuis, H.ISNI 0000000389669175
M. DeConto, Robert
Escutia, Carlota
Florindo, Fabio
G.W. Gasson, Edward
Francis, Jane
Hutchinson, David
Kennedy-Asser, Alan

Editors

Florindo, Fabio
SIegert, Martin
De Santis, Laura
Naish, Tim

Advisors

Supervisors

Document Type

Part of book
Open Access logo

License

taverne

Abstract

Antarctica underwent a complex evolution over the course of the Cenozoic, which influenced the history of the Earth’s climate system. The Eocene-Oligocene boundary is a divide of this history when the ice-free ‘greenhouse world’ transitioned to the ‘icehouse’ with the glaciation of Antarctica. Prior to this, Antarctica experienced warm climates, peaking during Early Eocene when tropical-like conditions existed at the margins of the continent where geological evidence is present. Climate signals in the geological record show that the climate then cooled, but not enough to allow the existence of significant ice until the latest Eocene. Glacial deposits from several areas around the continental margin indicate that ice was present by the earliest Oligocene. This matches the major oxygen isotope positive shift captured by marine records. On land, vegetation was able to persist, but the thermophylic plants of the Eocene were replaced by shrubby vegetation with the southern beech Nothofagus, mosses and ferns, which survived in tundra-like conditions. Coupled climate–ice sheet modelling indicates that changing levels of atmospheric CO2 controlled Antarctica’s climate and the onset of glaciation. Factors such as mountain uplift, vegetation changes, ocean gateway opening and orbital forcing all played a part in cooling the polar climate, but only when CO2 levels reached critical thresholds was Antarctica tipped into an icy glacial world.

Keywords

Antarctica, atmospheric CO, Eocene-Oligocene boundary, glaciation, ocean gateway, Taverne, General Earth and Planetary Sciences, SDG 13 - Climate Action, SDG 14 - Life Below Water, SDG 15 - Life on Land

Citation

Galeotti, S, Bijl, P, Brinkuis, H, M. DeConto, R, Escutia, C, Florindo, F, G.W. Gasson, E, Francis, J, Hutchinson, D, Kennedy-Asser, A, Lanci, L, Sauermilch, I, Sluijs, A & Stocchi, P 2021, The Eocene-Oligocene boundary climate transition : An Antarctic perspective. in F Florindo, M SIegert, L De Santis & T Naish (eds), Antarctic Climate Evolution. 2 edn, Elsevier, pp. 297-361. https://doi.org/10.1016/B978-0-12-819109-5.00009-8