Massive CO2 Ice Deposits Sequestered in the South Polar Layered Deposits of Mars

Shallow Radar soundings from the Mars Reconnaissance Orbiter reveal a buried deposit of carbon dioxide (CO2) ice within the south polar layered deposits of Mars with a volume of 9500 to 12,500 cubic kilometers, about 30 times that previously estimated for the south pole residual cap. The deposit occ...

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Bibliographic Details
Published in:Science
Main Authors: Roger J. Phillips, B. j. Davis, Kenneth L. Tanaka, S. Byrne, Michael T. Mellon, N. e. Putzig, Robert M. Haberle, Melinda A. Kahre, B. a. Campbell, L. m. Carter, I. b. Smith, John W. Holt, Suzanne E. Smrekar, Daniel C. Nunes, Jeffrey J. Plaut, A. f. Egan, Timothy N. Titus, SEU, Roberto
Other Authors: Roger J., Phillip, B. j., Davi, Kenneth L., Tanaka, S., Byrne, Michael T., Mellon, N. e., Putzig, Robert M., Haberle, Melinda A., Kahre, B. a., Campbell, L. m., Carter, I. b., Smith, John W., Holt, Suzanne E., Smrekar, Daniel C., Nune, Jeffrey J., Plaut, A. f., Egan, Timothy N., Titu, Seu, Roberto
Format: Article in Journal/Newspaper
Language:English
Published: AMER ASSOC ADVANCEMENT SCIENCE 2011
Subjects:
Online Access:http://hdl.handle.net/11573/496472
https://doi.org/10.1126/science.1203091
http://www.sciencemag.org/cgi/collection/planet_sci
http://www.sciencemag.org/content/suppl/2011/04/20/science.1203091.DC1.html
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Summary:Shallow Radar soundings from the Mars Reconnaissance Orbiter reveal a buried deposit of carbon dioxide (CO2) ice within the south polar layered deposits of Mars with a volume of 9500 to 12,500 cubic kilometers, about 30 times that previously estimated for the south pole residual cap. The deposit occurs within a stratigraphic unit that is uniquely marked by collapse features and other evidence of interior CO2 volatile release. If released into the atmosphere at times of high obliquity, the CO2 reservoir would increase the atmospheric mass by up to 80%, leading to more frequent and intense dust storms and to more regions where liquid water could persist without boiling.