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Evidence of Metasomatism in the Lowest Petrographic Types Inferred from A Na(-), K, Rich Rim Around A LEW 86018 (L3.1) ChondruleOrdinary chondrites (OCs) represent the most abundant extraterrestrial materials and also record the widest range of alteration of primary, pristine minerals of early Solar system material available for study. Relatively few investigations, however, address: (1) the role of fluid alteration, and (2) the relationship between thermal metamorphism and metasomatism in OCs, issues that have been extensively studied in many other meteorite groups e.g., CV, CO, CR, and enstatite chondrites. Detailed elemental abundances profiles across individual chondrules, and mineralogical studies of Lewis Hills (LEW) 86018 (L3.1), an unequilibrated ordinary chondrite (UOC) of low petrographic type of 3.1 returned from Antarctica, provide evidence of extensive alteration of primary minerals. Some chondrules have Na(-), K(-), rich rims surrounded by nepheline, albite, and sodalite-like Na(-), Cl(-), Al-rich secondary minerals in the near vicinity within the matrices. Although, limited evidences of low temperature (approximately 250 C) fluid-assisted alteration of primary minerals to phyllosilicates, ferroanolivine, magnetite, and scapolite have been reported in the lowest grades (less than 3.2) Semarkona (LL3.00) and Bishunpur (LL3.10), alkali-rich secondary mineralization has previously only been seen in higher grade greater than 3.4 UOCs. This preliminary result suggests highly localized metamorphism in UOCs and widens the range of alteration in UOCs and complicates classification of petrographic type and extent of thermal metamorphism or metasomatism. The work in progress will document the micro-textures, geochemistry (Ba, Ca, REE), and isotopic composition (oxygen, Al(-)- 26 Mg-26) of mineral phases in chondrules and adjoining objects to help us understand the formation scenario and delineate possible modes of metamorphism in UOCs.
Document ID
20150006011
Acquisition Source
Johnson Space Center
Document Type
Abstract
Authors
Mishra, Ritesh Kumar
(Oak Ridge Associated Universities, Inc. Houston, TX, United States)
Marhas, Kuljeet Kaur
(Physical Research Lab. Ahmedabad, India)
Simon, Justin I.
(NASA Johnson Space Center Houston, TX, United States)
Ross, Daniel Kent
(Jacobs Technology, Inc. Houston, TX, United States)
Date Acquired
April 21, 2015
Publication Date
May 3, 2015
Subject Category
Lunar And Planetary Science And Exploration
Geosciences (General)
Report/Patent Number
JSC-CN-33026
Report Number: JSC-CN-33026
Meeting Information
Meeting: 2015 AGU/GAC/MAC/CGU Joint Assembly
Location: Montreal
Country: Canada
Start Date: May 3, 2015
End Date: May 7, 2015
Sponsors: Mineralogical Association of Canada, Geological Association of Canada, American Geophysical Union, Canadian Geophysical Union
Distribution Limits
Public
Copyright
Public Use Permitted.
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