DocumentCode :
2334001
Title :
Implication from the examination of spectral library of hydroxylated and/or hydrated silicate minerals at 1.0–2.5 um wavelengths
Author :
Fan, Chaojun ; Xie, Hongjie ; Wu, Joan Q. ; Birnbaum, Stuart
Author_Institution :
Puyallup Res. & Extension Center, Washington State Univ., Puyallup, WA, USA
fYear :
2011
fDate :
6-9 June 2011
Firstpage :
1
Lastpage :
4
Abstract :
Hyperspectral imaging is broadly used in the identification of hydroxylated and hydrated silicate minerals, especially at the wavelengths of 1.0-2.50 μm. The vibrations of the hydroxyl (OH) molecule, water molecule (H-O-H), and metal-OH bonds, or their combinations, produce prominent absorption features at ~1.40, ~1.91 and 2.20-2.40 μm wavelengths. In remote sensing applications minerals showing one or two of these absorption features are usually categorized as hydroxylated and/or hydrated, and minerals showing all three absorption features are usually categorized as hydrated phyllosilicates. In this paper we examined the spectral library of common silicate minerals and found that some showing these absorption features are not hydroxylated and/or hydrated but with tiny alteration or impurities. This implies that the identification of hydroxylated and/or hydrated silicate minerals can´t be merely based on these absorption features and the incorporation of geology and environment in situ is very important. We also calculated absorption depths and silicate mineral ratios in these absorption features as references for discrimination. This study provides a cautionary perspective on the identification of hydrated phyllosilicate minerals with respect to mineralogical interpretations of Mars and other planets.
Keywords :
Mars; absorption; minerals; planetary remote sensing; planetary surfaces; Mars; absorption depth calculation; geology; hydrated phyllosilicates; hydrated silicate minerals; hydroxyl molecule vibrations; hydroxylated identification method; hydroxylated spectral library; metal-OH bonds; remote sensing; silicate mineral ratios; water molecule; wavelength 1.0 mum to 2.5 mum; Absorption; Iron; Libraries; Minerals; Vibrations; Wavelength measurement; Absorption feature and depth; Hydroxylated and hydrated silicate mineral; Hyperspectral imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Hyperspectral Image and Signal Processing: Evolution in Remote Sensing (WHISPERS), 2011 3rd Workshop on
Conference_Location :
Lisbon
ISSN :
2158-6268
Print_ISBN :
978-1-4577-2202-8
Type :
conf
DOI :
10.1109/WHISPERS.2011.6080848
Filename :
6080848
Link To Document :
بازگشت