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Recent spectroscopic findings concerning clay/water interactions at low humidity: Possible applications to models of Martian surface reactivityA feasibility study assessing the utility of the adaptation of near infrared correlation spectroscopy to quantifying iron and adsorbed water in some clay-based Mars soil analog materials (MarSAM's). The work was intended to constitute Phase 1 of an approach to identifying optical analytical wavelength regions, not only for important mineral classes, but for chemically active centers within them. Many of these centers are common to unrelated mineral classes and of disproportionate influence relative to the mineral structure as a whole in determining the surface reactivity of mineral surfaces. We previously reported linearity between reflectance and total iron and total moisture over a large range of both key variables. We also discovered interesting relationships between the intensity of iron bands and the relative humidity of the systems. These relationships were confirmed. We also show that, in the low humidity range, reflectance is linearly dependent on a different kind of water from that best representing the full humidity range (the kind of water associated, in clays, with surface acidity). These relationships and the sensitivity and capability of quantitation of near infrared data indicate high promise with the production of reactive surface intermediates of products of surface reactions.
Document ID
19920004447
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Coyne, L.
(San Jose State Univ. CA., United States)
Bishop, J.
(San Jose State Univ. CA., United States)
Howard, L.
(San Jose State Univ. CA., United States)
Scattergood, T. W.
(State Univ. of New York Stony Brook., United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1991
Publication Information
Publication: NASA, Washington, Fourth Symposium on Chemical Evolution and the Origin and Evolution of Life
Subject Category
Space Biology
Accession Number
92N13665
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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