HR: 0800h
AN: P51D-0967 [Abstracts]
TI: Prospecting for Methane on Mars
AU: * Allen, C C
EM: carlton.c.allen@nasa.gov
AF: NASA Johnson Space Center, NASA Parkway, Houston, TX 77058
United States
AU: Oehler, D Z
EM: dorothy.z.oehler1@jsc.nasa.gov
AF: NASA Johnson Space Center, NASA Parkway, Houston, TX 77058
United States
AU: Venechuk, E M
EM: elizabeth.venechuk@gmail.com
AF: Scripps College, 1030 Columbia Ave., Claremont, CA 91711
AB:
Methane has been detected in the Martian atmosphere at a concentration of approximately 10 ppb. The lifetime of methane
against decomposition by solar radiation is around 300 years, strongly suggesting that methane is currently being released to
the atmosphere. By analogy to Earth, possible methane sources on Mars include active volcanism, hot springs, frozen methane
clathrates, thermally matured sedimentary organic matter, and extant microbial metabolism. The discovery of any one of
these sources would revolutionize our understanding of Mars.
The concentration of atmospheric methane is generally constant around the planet, reflecting effective mixing of the
atmosphere. However, measurable variations have been observed, suggesting localized sources of this gas. The highest values
have been measured over three large areas: Arabia Terra, Elysium Planum, and Arcadia-Memnonia. We are employing the
extensive geological and geophysical datasets from Viking, Mars Odyssey, and Mars Global Surveyor in a search for possible
methane sources in Arabia Terra. Arabia Terra was chosen for study as it contains indicators of sedimentary processes and
water that are unique and thus may indicate an unusually promising setting for the presence of biogenic methane.
We have completed a preliminary survey of Arabia Terra (0 to 40 N, 20 W to 60 E) using Mars Orbiter Camera high resolution
images. We documented the locations of layered deposits within craters and on intercrater plains, the locations and
orientations of faults displacing layers, and the locations of craters with bright rims. Areas containing all of these
features in close association may show promise as sources for the methane gas in Mars' atmosphere.
A total of 1011 images were examined, and 811 showed layered outcrops. Layers were seen in every 10 x 10 degree
latitude/longitude bin. Excellent examples of layered outcrops occur both within craters and on the plains. The highest
concentrations of layers overlie Noachian cratered plains units, while few layers overlie Hesperian and Noachian ridged
units. Layers are concentrated in the western half of the region, generally above the -2000 m contour. Faults are rare, and
concentrate in the SW corner of the region, in the area from 4 to 11 N and 1 to 11 W. Craters with bright rims generally
occur between 0 and 20 W.
An analysis of these preliminary data suggests that the southwest quadrant of Arabia Terra, particularly in the area of 2 to
12 N, 5 to 12 W, is a prime area for more detailed exploration in the search for sources of methane.
DE: 5220 Hydrothermal systems and weathering on other planets
DE: 5405 Atmospheres (0343, 1060)
DE: 5470 Surface materials and properties
DE: 6225 Mars
SC: Planetary Sciences [P]
MN: Fall Meeting 2005