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Electron Beam Damage in Apatite: Limitations for SKα Measurements of S6+/∑S In magmatic systems, the availabil- ity of excess oxygen that can react with multivalent elements such as Fe and S to change their charge (oxi- dation of Fe2+ to Fe3+ or reduction of S6+ to S2-) is characterized by a parameter called the oxygen fugacity (ƒO2). The ƒO2 controls the availability of these ions and consequently the minerals—and the chemistry of those minerals—that crystallize from a melt. Mineral mode and chemistry control how magmas evolve, and given that ƒO2 varies by many orders of magnitude on different planets [2], understanding the ƒO2 of a mag- ma is critical to relating observations about a magma to the body on which it forms. The mineral apatite was long thought to only incor- porate S6+ in a coupled substitution for P5+, but recently natural apatites with S2- were identified in lunar mare basalts that crystallized at low ƒO2 [3]. This suggests that apatite can be used as a monitor of ƒO2 assuming that one can 1) measure S6+/∑S (S6+ over total sulfur), and 2) determine some partitioning relationship be- tween apatite and melt for S6+ and S2-. The most common method for measuring S6+/∑S is X-ray Absorption Near-Edge Spectroscopy (XANES), but given the limited access to synchrotron facilities, it is wise to explore the potential of other methods for measuring S6+/∑S. One such possible method relies upon the shift in energy of the sulfur K-α peak on the electron microprobe. However, apatite is subject to well-documented beam damage [4, 5], so it is neces- sary to evaluate under what conditions can reliable S6+ ethod.
Document ID
20190001827
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
de Chizelle, J. Kuhn
(Jacobs Technology, Inc. Houston, TX, United States)
Ross, D. K.
(Texas Univ. El Paso, TX, United States)
Boyce, J. W.
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
March 25, 2019
Publication Date
March 21, 2019
Subject Category
Space Sciences (General)
Report/Patent Number
JSC-E-DAA-TN65746
Meeting Information
Meeting: Lunar and Planetary Science Conference (LPSC)
Location: Woodlands, TX
Country: United States
Start Date: March 18, 2019
End Date: March 22, 2019
Sponsors: Lunar and Planetary Institute (LPI)
Funding Number(s)
CONTRACT_GRANT: NNJ13HA01C
Distribution Limits
Public
Copyright
Public Use Permitted.
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