Poorly Crystalline, Iron-Bearing Aluminosilicates and Their Importance on MarsMartian rocks and sediments contain weathering products including evaporite salts and clay minerals that only form as a result of interaction between rocks and water [1-6]. These weathering products are key to studying the history of water on Mars because their type, abundance and location provide clues to past conditions on the surface of the planet, as well as to the possible location of present-day reservoirs of water. Weathering of terrestrial volcanic rocks similar to those on Mars produces nano-sized, variably hydrated aluminosilicate and iron oxide minerals [7-10] including allophane, imogolite, halloysite, hisingerite, and ferrihydrite. The nanoaluminosilicates can contain isomorphically substituted Fe, which affects their spectral and physical properties. Detection and quantification of such minerals in natural environments on earth is difficult due to their variable chemical composition and lack of long-range crystalline order [9, 11, 12]. Despite the difficulty in characterizing these materials, they are common on Earth, and data from orbital remote sensing and rover-based instruments suggest that they are also present on Mars [9, 10, 13-17]. Their accurate detection and quantification require a better understanding of how composition affects their spectral properties. We present here the results of XAFS spectroscopy; these results will be corroborated with planned Mossbauer and reflectance spectroscopy.
Document ID
20110005500
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Baker, L. L. (Idaho Univ. Moscow, ID, United States)
Strawn, D. G. (Idaho Univ. Moscow, ID, United States)
McDaniel, P. A. (Idaho Univ. Moscow, ID, United States)
Nickerosn, R. N. (Idaho Univ. Moscow, ID, United States)
Bishop, J. L. (Search for Extraterrestrial Intelligence Inst. Mountain View, CA, United States)
Ming, D. W. (NASA Johnson Space Center Houston, TX, United States)
Morris, Richard V. (NASA Johnson Space Center Houston, TX, United States)
Date Acquired
August 25, 2013
Publication Date
January 1, 2011
Subject Category
Geophysics
Report/Patent Number
JSC-CN-22629Report Number: JSC-CN-22629
Meeting Information
Meeting: 42nd Lunar and Planetary Science Conference