Other
Scientific paper
Mar 2004
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2004icar..168..116c&link_type=abstract
Icarus, Volume 168, Issue 1, p. 116-121.
Other
45
Scientific paper
The 362.156 GHz absorption spectrum of H2O2 in the Mars atmosphere was observed on September 4 of 2003, employing the James Clerk Maxwell Telescope (JCMT) sub-millimeter facility on Mauna Kea, Hawaii. Radiative transfer analysis of this line absorption yields an average volume mixing ratio of 18+/-0.4 ppbv within the lower (0-30 km) Mars atmosphere, in general accordance with standard photochemical models (e.g., Nair et al., 1994, Icarus 111, 124-150). Our derived H2O2 abundance is roughly three times greater than the upper limit retrieved by Encrenaz et al. (2002, Astron. Astrophys. 396, 1037-1044) from infrared spectroscopy, although part of this discrepancy may result from the different solar longitudes (Ls) of observation. Aphelion-to-perihelion thermal forcing of the global Mars hygropause generates substantial (>200%) increases in HOx abundances above ~10 km altitudes between the Ls=112° period of the Encrenaz et al. upper limit measurement and the current Ls=250° period of detection (Clancy and Nair, 1996, J. Geophys. Res. 101, 12785-12590). The observed H2O2 line absorption weakens arguments for non-standard homogeneous (Encrenaz et al., 2002, Astron. Astrophys. 396, 1037-1044) or heterogeneous (Krasnopolsky, 2003a, J. Geophys. Res. 108; 2003b, Icarus 165, 315-325) chemistry, which have been advocated partly on the basis of infrared (8 μm) non-detections for Mars H2O2. Observation of Mars H2O2 also represents the first measurement of a key catalytic specie in a planetary atmosphere other than our own.
Clancy Todd R.
Moriarty-Schieven Gerald H.
Sandor Brad J.
No associations
LandOfFree
A measurement of the 362 GHz absorption line of Mars atmospheric H2O2 does not yet have a rating. At this time, there are no reviews or comments for this scientific paper.
If you have personal experience with A measurement of the 362 GHz absorption line of Mars atmospheric H2O2, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and A measurement of the 362 GHz absorption line of Mars atmospheric H2O2 will most certainly appreciate the feedback.
Profile ID: LFWR-SCP-O-1134509