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Antarctic records of precession-paced insolation-driven warming during early Pleistocene Marine Isotope Stage 31.

Academic Article
Publication Date:
2008
abstract:
Precisely dated Antarctic continental margin and Southern Ocean geological records show that the early Pleistocene interglacial Marine Isotope Stage 31 (MIS-31) was characterized by warmer than present surface waters with reduced sea-ice and enhanced high latitude marine carbonate production. Micropaleontologic, isotopic, and paleomagnetic evidence from drill cores at 77°S (Cape Roberts Project-1) and 53°S (ODP Site 1094) indicate circumantarctic changes in sea surface temperature and water mass stratification that are in phase with high southern latitude insolation changes during MIS-31. These changes imply a significant, though as yet unquantifiable reduction in Antarctic ice volume. This study supports the hypothesis that the interhemispheric antiphased relationship of the precession cycle attenuates a potentially significant Antarctic ice volume signal in the deep sea oxygen isotope record. The implications are that Antarctic marine ice sheets may be more susceptible to warming and high insolation driven retreat than has been widely recognized.
Iris type:
01.01 Articolo in rivista
Keywords:
Southern Ocean; Pleistocene interglacial Marine Isotope Stage 31; deep sea oxygen isotope
List of contributors:
Taviani, Marco
Handle:
https://iris.cnr.it/handle/20.500.14243/35290
Published in:
GEOPHYSICAL RESEARCH LETTERS
Journal
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