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Heating Experiments of the Tagish Lake Meteorite: Investigation of the Effects of Short-Term Heating on Chondritic OrganicsWe present in this study the effects of short-term heating on organics in the Tagish Lake meteorite and how the difference in the heating conditions can modify the organic matter (OM) in a way that complicates the interpretation of a parent body's heating extent with common cosmo thermometers. The kinetics of short-term heating and its influence on the organic structure are not well understood, and any study of OM is further complicated by the complex alteration processes of the thermally metamorphosed carbonaceous chondrites - potential analogues of the target asteroid Ryugu of the Hayabusa2 mission - which had experienced post-hydration, short-duration local heating. In an attempt to understand the effects of short-term heating on chondritic OM, we investigated the change in the OM contents of the experimentally heated Tagish Lake meteorite samples using Raman spectroscopy, scanning transmission X-ray microscopy utilizing X-ray absorption near edge structure spectroscopy, and ultra-performance liquid chromatography fluorescence detection and quadrupole time of flight hybrid mass spectrometry. Our experiment suggests that graphitization of OM did not take place despite the samples being heated to 900 degrees Centigrade for 96 hours, as the OM maturity trend was influenced by the nature of the OM precursor, such as the presence of abundant oxygenated moieties. Although both the intensity of the 1s-sigma σ* exciton cannot be used to accurately interpret the peak metamorphic temperature of the experimentally heated Tagish Lake sample, the Raman graphite band widths of the heated products significantly differ from that of chondritic OM modified by long-term internal heating.
Document ID
20180006115
Acquisition Source
Johnson Space Center
Document Type
Preprint (Draft being sent to journal)
Authors
Chan, Queenie Hoi Shan
(Universities Space Research Association (USRA) Houston, TX, United States)
Nakato, Aiko
(Kyoto Univ. Kyoto, Japan)
Kebukawa, Yoko
(Carnegie Institution of Washington Washington, DC, United States)
Zolensky, Michael
(NASA Johnson Space Center Houston, TX, United States)
Nakamura, Tomoki
(Tohoku Univ. Sendai, Japan)
Maisano, Jessi
(Texas Univ. Austin, TX, United States)
Colbert, Matthew
(Texas Univ. Austin, TX, United States)
Martinez, James
(Jacobs Technology Inc. Tullahoma, TN, United States)
Kilcoyne, David
(California Univ., Lawrence Berkeley National Lab. Berkeley, CA, United States)
Suqa, Hiroki
(Hiroshima Univ. Higashihiroshima, Japan)
Takahashi, Yoshio
(Tokyo Univ. Tokyo, Japan)
Takeichi, Yasuo
(High Energy Accelerator Research Organization Tsukuba, Japan)
Mase, Kazuhiko
(High Energy Accelerator Research Organization Tsukuba, Japan)
Wright, Ian
(Open Univ. Milton Keynes, United Kingdom)
Date Acquired
October 4, 2018
Publication Date
January 1, 2018
Publication Information
Publisher: Meteoritics and Planetary Science
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
JSC-E-DAA-TN58855
Funding Number(s)
CONTRACT_GRANT: NNJ13HA01C
Distribution Limits
Public
Copyright
Public Use Permitted.
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