HR: 09:30h
AN: P41D-07 [Abstracts]
TI: Astrobiology of Antarctic ice Covered Lakes
AU: * Doran, P T
EM: pdoran@uic.edu
AF: Universoty of Illinos at Chicago, Earth and Environmental Sciences (mc 186)
845 W. Taylor St, Chicago, IL 60607
United States
AU: Fritsen, C H
EM: Chris.Fritsen@dri.edu
AF: Desert Research Institute, 2215 Raggio Parkway, Reno, NV 89512
United States
AB:
Antarctica contains a number of permanently ice-covered lakes which have often been used as analogs of purported lakes on
Mars in the past. Antarctic subglacial lakes, such as Lake Vostok, have also been viewed as excellent analogs for an ice
covered ocean on the Jovian moon Europa, and to a lesser extend on Mars. Lakes in the McMurdo Dry Valleys of East Antarctica
have ice covers that range from 3 to 20 meters thick. Water salinities range from fresh to hypersaline. The thinner
ice-covered lakes have a well-documented ecology that relies on the limited available nutrients and the small amount of light
energy that penetrates the ice covers. The thickest ice-covered lake (Lake Vida in Victoria Valley) has a brine beneath 20 m
of ice that is 7 times sea water and maintains a temperature below -10 degrees Celsius. This lake is vastly different from
the thinner ice-covered lakes in that there is no communication with the atmosphere. The permanent ice cover is so thick,
that summer melt waters can not access the sub-ice brine and so the ice grows from the top up, as well as from the bottom
down. Brine trapped beneath the ice is believed to be ancient, stranded thousands of years ago when the ice grew thick enough
to isolate it from the surface. We view Lake Vida as an excellent analog for the last aquatic ecosystem to have existed on
Mars under a planetary cooling. If, as evidence is now increasingly supporting, standing bodies of water existed on Mars in
the past, their fate under a cooling would be to go through a stage of permanent ice cover establishment, followed by a
thickening of that ice cover until the final stage just prior to a cold extinction would be a Lake Vida-like lake. If dust
storms or mass movements covered these ancient lakes, remnants may well be in existence in the subsurface today. A NASA
Astrobiology Science and Technology for Exploring Planets (ASTEP) project will drill the Lake Vida ice cover and access the
brine and sediments beneath in November 2005. This presentation will include an update from the field.
DE: 0406 Astrobiology and extraterrestrial materials
SC: Planetary Sciences [P]
MN: Fall Meeting 2005