Author
Listed:
- J. A. Mikucki
(University of Tennessee)
- E. Auken
(Aarhus University)
- S. Tulaczyk
(University of California)
- R. A. Virginia
(Environmental Studies Program, Dartmouth College)
- C. Schamper
(Sorbonne Universités, UPMC Univ Paris 06)
- K. I. Sørensen
(Aarhus University)
- P. T. Doran
(Louisiana State University)
- H. Dugan
(University of Illinois at Chicago)
- N. Foley
(University of California)
Abstract
The occurrence of groundwater in Antarctica, particularly in the ice-free regions and along the coastal margins is poorly understood. Here we use an airborne transient electromagnetic (AEM) sensor to produce extensive imagery of resistivity beneath Taylor Valley. Regional-scale zones of low subsurface resistivity were detected that are inconsistent with the high resistivity of glacier ice or dry permafrost in this region. We interpret these results as an indication that liquid, with sufficiently high solute content, exists at temperatures well below freezing and considered within the range suitable for microbial life. These inferred brines are widespread within permafrost and extend below glaciers and lakes. One system emanates from below Taylor Glacier into Lake Bonney and a second system connects the ocean with the eastern 18 km of the valley. A connection between these two basins was not detected to the depth limitation of the AEM survey (∼350 m).
Suggested Citation
J. A. Mikucki & E. Auken & S. Tulaczyk & R. A. Virginia & C. Schamper & K. I. Sørensen & P. T. Doran & H. Dugan & N. Foley, 2015.
"Deep groundwater and potential subsurface habitats beneath an Antarctic dry valley,"
Nature Communications, Nature, vol. 6(1), pages 1-9, November.
Handle:
RePEc:nat:natcom:v:6:y:2015:i:1:d:10.1038_ncomms7831
DOI: 10.1038/ncomms7831
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