HR: 14:10h
AN: MR53A-03 [Abstracts]
TI: Characterization of Al-Si Ordering State in Alkali Feldspar Using ALCHEMI
AU: * Wu, J
EM: jun.wu@jhu.edu
AF: Department of Earth and Planetary Sciences, Olin Hall, Johns Hopkins University,
Baltimore, MD 21218, United States
AU: Veblen, D R
EM: dveblen@jhu.edu
AF: Department of Earth and Planetary Sciences, Olin Hall, Johns Hopkins University,
Baltimore, MD 21218, United States
AB:
Atom Location by CHanneling-Enhanced MIcroanalysis (ALCHEMI) is used in this study to determine the
occupancy of Al atoms in the T1o site (t1o) of alkali feldspar. Combined with the method shown by
Taft?and Buseck (1983), analytical electron microscopy proves to be a viable technique for fully characterizing the
Al-Si ordering state in the feldspar framework. We have applied this method to both gem orthoclase from
Itrongay, Madagascar, and to its heated counterpart. Our preliminary results give 0.737 and 0.372 as 2t1
(= t1o + t1m) and t1o respectively for the original orthoclase, versus 0.517 and 0.256 for
heated orthoclase. Standard X-ray powder diffraction experiments will be done to verify these measurements.
Furthermore, we are seeking a quantitative relationship between the incident electron intensity based on the
Bloch-wave formulation and the positions of interstitial sites with respect to the reference channeling plane. This
approach could give a more precise interpretation of ALCHEMI data in our case and in similar applications.
DE: 3620 Mineral and crystal chemistry (1042)
DE: 3924 High-pressure behavior
DE: 3954 X-ray, neutron, and electron spectroscopy and diffraction
DE: 7207 Core (1212, 1213, 8124)
DE: 7208 Mantle (1212, 1213, 8124)
SC: Mineral and Rock Physics [MR]
MN: 2007 Fall Meeting