HR: 13:55h
AN: P13E-02 [WITHDRAWN] [Abstracts]
TI: Chemical Implications of Electric Discharge for Methane in the Martian Atmosphere - Laboratory Simulations
AU: * ten Kate, I L
EM: Inge.L.TenKate@nasa.gov
AF: NASA Goddard Space Flight Center, 8800 Greenbelt Road, Greenbelt, MD 20771, United
States
AU: * ten Kate, I L
EM: Inge.L.TenKate@nasa.gov
AF: Goddard Earth Science and Technology Center, 5523 Research Park Drive, Suite 320,
Baltimore, MD 21228, United States
AU: Mahaffy, P R
EM: Paul.R.Mahaffy@nasa.gov
AF: NASA Goddard Space Flight Center, 8800 Greenbelt Road, Greenbelt, MD 20771, United
States
AB:
Methane is still one of the most debated species in the martian atmosphere. The search for methane in the
martian atmosphere has led to variable concentration estimates, from none to 10 ppbv globally. Different theories
have been proposed to explain this variability. One proposed destruction mechanism for methane is breakdown
through electric discharge induced chemistry. This discharge could be induced on Mars by electric fields
generated by dust particle interaction in dust storms and dust devils. Theoretical models describe the processes
that could occur in the martian atmosphere and provide estimates of breakdown voltages and chemical reaction
schemes of breakdown products.
In order to test these predicted breakdown scenarios, we have built a laboratory setup to simulate these
processes. With this setup we will not only measure the breakdown rates and products of methane in the martian
atmosphere, but it also enables to measure formation products such as hydrogen peroxide. Hydrogen peroxide
has been suggested to play a role in the desctruction of organics on the martian surface. We will present the first
results from our experiments as well as the implications for the methane cycle on Mars.
DE: 0343 Planetary atmospheres (5210, 5405, 5704)
DE: 3304 Atmospheric electricity
DE: 5210 Planetary atmospheres, clouds, and hazes (0343)
DE: 5405 Atmospheres (0343, 1060)
DE: 6225 Mars
SC: Planetary Sciences [P]
MN: 2007 Fall Meeting