HR: 15:25h
AN: U23B-06 [Abstracts]
TI: Exploration of Antarctic Subglacial Aquatic Environments: Environmental and Scientific Stewardship
AU: * White, J W
EM: james.white@colorado.edu
AF: University of Colorado, INSTAAR
Campus Box 450, Boulder, CO 80309, United States
AU: Hobbie, J E
AF: Marine Biological Laboratory, Ecosystems Center, 7 MBL Street, Woods Hole, MA 02543,
United States
AU: Baker, A
AF: Technical Administrative Services, PO Box 620433, Littleton, CO 80162, United States
AU: Clarke, G
AF: The University of British Columbia, 6339 Stores Road, Vancouver, BC V6T 1Z4, Canada
AU: Doran, P T
AF: University of Illinois at Chicago, Earth and Environmental Sciences, MC 186
845 W Taylor Street, Chicago, IL 60607, United States
AU: Karl, D
AF: University of Hawaii at Manoa, School of Ocean and Earth Science, 1000 Pope Road,
Honolulu, HI 96822, United States
AU: Methe, B
AF: The Institute for Genomic Research, 9712 Medical Center Drive, Rockville, MD 20850,
United States
AU: Miller, H
AF: Alfred-Wegener-Institute for Polar and Marine Research, Building D-2880
Columbusstrasse, Bremerhaven, D 27568, Germany
AU: Mukasa, S B
AF: University of Michigan
Department of Geological Sciences, 2534 CC Little Building, Ann Arbor, MI 48109, United States
AU: Race, M
AF: SETI Institute, 505 N Whisman Road, Mountain View, CA 94043, United States
AU: Vincent, W
AF: Departement de Biologie, Universite Laval, Pavillon Alexandre-Vachon, Quebec, G1K 7P4,
Canada
AU: Walton, D
AF: British Antarctic Survey, High Cross
Maddingly Road, Cambridge, CB3 0BT, United Kingdom
AU: Uhle, M
AF: National Research Council, 500 Fifth Street, Washington, DC 20001, United States
AB:
Antarctica is renowned for its extreme cold; yet surprisingly, there is liquid water at the base of the Antarctic ice
sheet several kilometers beneath the surface. The exploration of these subglacial aquatic environments is in its
initial stages, and many fundamental questions about these environments can only be answered by entering and
sampling the water. Accordingly, the management of subglacial aquatic environments requires responsible
environmental stewardship while allowing field research. As of early 2007, no one has yet drilled into a lake but
entry within the next one or two years is likely. Thus, the challenge is to determine the best way of drilling into,
extensively sampling, and monitoring these environments. While general guidelines for research in Antarctica are
provided in the Antarctic Treaty, currently no clear protocols or standards for minimizing contamination have been
established. At the request of the National Science Foundation (NSF), the National Research Council convened a
committee to develop a set of environmental and scientific protection standards needed to responsibly explore
the subglacial lake environments in Antarctica. Specifically, the committee was asked to define levels of
cleanliness for equipment or devices entering subglacial aquatic environments, develop a sound scientific basis
for contamination standards, and recommend the next steps needed to define an overall exploration strategy.
This talk will present the findings of that committee. The committee included U.S. and international scientists, and
gathered information from the global scientific community. Although a U.S. scientific advisory body produced this
study, the committee hopes that its multinational makeup will be recognized and that the recommendations in
this report will serve as a basis for broad international discussion about environmental stewardship for the
exploration of subglacial aquatic environments.
UR: http://nationalacademies.org/prb
DE: 0726 Ice sheets
DE: 0776 Glaciology (1621, 1827, 1863)
DE: 0793 Biogeochemistry (0412, 0414, 1615, 4805, 4912)
DE: 0799 General or miscellaneous
SC: Union [U]
MN: 2007 Fall Meeting