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Postglacial evolution of marine and lacustrine water bodies in Bunger Hills

Authors :
Sonja Berg
Martin Melles
Zina V. Pushina
Damian B. Gore
Sergei Verkulich
Source :
Antarctic Science. 32:107-129
Publication Year :
2020
Publisher :
Cambridge University Press (CUP), 2020.

Abstract

Unglaciated coastal areas in East Antarctica provide records of past ice sheet and glacier fluctuations and subsequent environmental conditions. In this paper we review lithological, geochemical, diatom and radiocarbon data from sediment records from inland and epishelf lakes in Bunger Hills, East Antarctica. While some hilltops were unglaciated during the Last Glacial Maximum, till deposits in lake basins indicate infilling by glacier ice prior to the Holocene. Proglacial sedimentation occurred in lakes during the early Holocene. Around 9.6 kabp, deposition of marine sapropel started under relatively warm climate conditions. Inland lakes were affected by high clastic input from meltwater runoff untilc.7.9 kabp, when deposition became highly organic and biogenic proxies indicate a period of cooler conditions. Epishelf lakes experienced a decrease in water exchange with the ocean and increased freshwater input around 7.7 ± 0.2 kabpand after 2.2 kabp. This probably resulted from grounding line advances of the bounding glaciers, which could be either controlled by relative sea level (RSL) lowering and/or climate-driven glacier dynamics. The absence of marine sediments in the postglacial record of Algae Lake indicates that Holocene RSL probably reached a maximum at or below 10 m above present sea level.

Details

ISSN :
13652079 and 09541020
Volume :
32
Database :
OpenAIRE
Journal :
Antarctic Science
Accession number :
edsair.doi...........b31448f55ba6827e454321a30c387491
Full Text :
https://doi.org/10.1017/s0954102019000476