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Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite

Here, we report the mineralogy, petrography, C-N-O-stable isotope compositions, degree of disorder of organic matter, and abundances of presolar components of the chondrite Roberts Massif (RBT) 04133 using a coordinated, multitechnique approach. The results of this study are inconsistent with its in...

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Autores principales: Davidson, Jemma, Schrader, Devin L, Alexander, Conel M O'D, Lauretta, Dante S, Busemann, Henner, Franchi, Ian A, Greenwood, Richard C, Connolly, Harold C, Domanik, Kenneth J, Verchovsky, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4657624/
https://www.ncbi.nlm.nih.gov/pubmed/26640360
http://dx.doi.org/10.1111/maps.12377
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author Davidson, Jemma
Schrader, Devin L
Alexander, Conel M O'D
Lauretta, Dante S
Busemann, Henner
Franchi, Ian A
Greenwood, Richard C
Connolly, Harold C
Domanik, Kenneth J
Verchovsky, Alexander
author_facet Davidson, Jemma
Schrader, Devin L
Alexander, Conel M O'D
Lauretta, Dante S
Busemann, Henner
Franchi, Ian A
Greenwood, Richard C
Connolly, Harold C
Domanik, Kenneth J
Verchovsky, Alexander
author_sort Davidson, Jemma
collection PubMed
description Here, we report the mineralogy, petrography, C-N-O-stable isotope compositions, degree of disorder of organic matter, and abundances of presolar components of the chondrite Roberts Massif (RBT) 04133 using a coordinated, multitechnique approach. The results of this study are inconsistent with its initial classification as a Renazzo-like carbonaceous chondrite, and strongly support RBT 04133 being a brecciated, reduced petrologic type >3.3 Vigarano-like carbonaceous (CV) chondrite. RBT 04133 shows no evidence for aqueous alteration. However, it is mildly thermally altered (up to approximately 440 °C); which is apparent in its whole-rock C and N isotopic compositions, the degree of disorder of C in insoluble organic matter, low presolar grain abundances, minor element compositions of Fe,Ni metal, chromite compositions and morphologies, and the presence of unequilibrated silicates. Sulfides within type I chondrules from RBT 04133 appear to be pre-accretionary (i.e., did not form via aqueous alteration), providing further evidence that some sulfide minerals formed prior to accretion of the CV chondrite parent body. The thin section studied contains two reduced CV3 lithologies, one of which appears to be more thermally metamorphosed, indicating that RBT 04133, like several other CV chondrites, is a breccia and thus experienced impact processing. Linear foliation of chondrules was not observed implying that RBT 04133 did not experience high velocity impacts that could lead to extensive thermal metamorphism. Presolar silicates are still present in RBT 04133, although presolar SiC grain abundances are very low, indicating that the progressive destruction or modification of presolar SiC grains begins before presolar silicate grains are completely unidentifiable.
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spelling pubmed-46576242015-12-02 Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite Davidson, Jemma Schrader, Devin L Alexander, Conel M O'D Lauretta, Dante S Busemann, Henner Franchi, Ian A Greenwood, Richard C Connolly, Harold C Domanik, Kenneth J Verchovsky, Alexander Meteorit Planet Sci Articles Here, we report the mineralogy, petrography, C-N-O-stable isotope compositions, degree of disorder of organic matter, and abundances of presolar components of the chondrite Roberts Massif (RBT) 04133 using a coordinated, multitechnique approach. The results of this study are inconsistent with its initial classification as a Renazzo-like carbonaceous chondrite, and strongly support RBT 04133 being a brecciated, reduced petrologic type >3.3 Vigarano-like carbonaceous (CV) chondrite. RBT 04133 shows no evidence for aqueous alteration. However, it is mildly thermally altered (up to approximately 440 °C); which is apparent in its whole-rock C and N isotopic compositions, the degree of disorder of C in insoluble organic matter, low presolar grain abundances, minor element compositions of Fe,Ni metal, chromite compositions and morphologies, and the presence of unequilibrated silicates. Sulfides within type I chondrules from RBT 04133 appear to be pre-accretionary (i.e., did not form via aqueous alteration), providing further evidence that some sulfide minerals formed prior to accretion of the CV chondrite parent body. The thin section studied contains two reduced CV3 lithologies, one of which appears to be more thermally metamorphosed, indicating that RBT 04133, like several other CV chondrites, is a breccia and thus experienced impact processing. Linear foliation of chondrules was not observed implying that RBT 04133 did not experience high velocity impacts that could lead to extensive thermal metamorphism. Presolar silicates are still present in RBT 04133, although presolar SiC grain abundances are very low, indicating that the progressive destruction or modification of presolar SiC grains begins before presolar silicate grains are completely unidentifiable. Blackwell Publishing Ltd 2014-12 2014-11-07 /pmc/articles/PMC4657624/ /pubmed/26640360 http://dx.doi.org/10.1111/maps.12377 Text en © 2014 The Authors. Meteoritics & Planetary Science published by Wiley Periodicals, Inc. on behalf of The Meteoritical Society. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Davidson, Jemma
Schrader, Devin L
Alexander, Conel M O'D
Lauretta, Dante S
Busemann, Henner
Franchi, Ian A
Greenwood, Richard C
Connolly, Harold C
Domanik, Kenneth J
Verchovsky, Alexander
Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title_full Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title_fullStr Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title_full_unstemmed Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title_short Petrography, stable isotope compositions, microRaman spectroscopy, and presolar components of Roberts Massif 04133: A reduced CV3 carbonaceous chondrite
title_sort petrography, stable isotope compositions, microraman spectroscopy, and presolar components of roberts massif 04133: a reduced cv3 carbonaceous chondrite
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4657624/
https://www.ncbi.nlm.nih.gov/pubmed/26640360
http://dx.doi.org/10.1111/maps.12377
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