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Chemical Zoning of Feldspars in Lunar Granitoids: Implications for the Origins of Lunar Silicic MagmasFine-scale chemical and textural measurements of alkali and plagioclase feldspars in the Apollo granitoids (ex. Fig. 1) can be used to address their petrologic origin(s). Recent findings suggest that these granitoids may hold clues of global importance, rather than of only local significance for small-scale fractionation. Observations of morphological features that resemble silicic domes on the unsampled portion of the Moon suggest that local, sizable net-works of high-silica melt (>65 wt % SiO2) were present during crust-formation. Remote sensing data from these regions suggest high concentrations of Si and heat-producing elements (K, U, and Th). To help under-stand the role of high-silica melts in the chemical differentiation of the Moon, three questions must be answered: (1) when were these magmas generated?, (2) what was the source material?, and (3) were these magmas produced from internal differentiation. or impact melting and crystallization? Here we focus on #3. It is difficult to produce high-silica melts solely by fractional crystallization. Partial melting of preexisting crust may therefore also have been important and pos-sibly the primary mechanism that produced the silicic magmas on the Moon. Experimental studies demonstrate that partial melting of gabbroic rock under mildly hydrated conditions can produce high-silica compositions and it has been suggested by that partial melting by basaltic underplating is the mechanism by which high-silica melts were produced on the Moon. TEM and SIMS analyses, coordinated with isotopic dating and tracer studies, can help test whether the minerals in the Apollo granitoids formed in a plutonic setting or were the result of impact-induced partial melting. We analyzed granitoid clasts from 3 Apollo samples: polymict breccia 12013,141, crystalline-matrix breccia 14303,353, and breccia 15405,78
Document ID
20140012602
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Mills, R. D
(Oak Ridge Associated Universities, Inc. Houston, TX, United States)
Simon, J. I.
(NASA Johnson Space Center Houston, TX, United States)
Alexander, C.M. O'D.
(Carnegie Institution of Washington Washington, DC, United States)
Wang, J.
(Carnegie Institution of Washington Washington, DC, United States)
Christoffersen, R.
(Jacobs Technologies Engineering Science Contract Group Houston, TX, United States)
Rahman, Z..
(Jacobs Technologies Engineering Science Contract Group Houston, TX, United States)
Date Acquired
September 26, 2014
Publication Date
March 17, 2014
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
JSC-CN-30381
Report Number: JSC-CN-30381
Meeting Information
Meeting: Lunar and Planetary Science Conference
Location: The Woodlands, TX
Country: United States
Start Date: March 17, 2014
End Date: March 21, 2014
Sponsors: NASA Johnson Space Center, Lunar and Planetary Inst., Universities Space Research Association
Distribution Limits
Public
Copyright
Public Use Permitted.
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