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    Shape, metal abundance, chemistry, and origin of chondrules in the Renazzo (CR) chondrite

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    Author
    Ebel, D. S.
    Weisberg, M. K.
    Hertz, J.
    Campbell, A. J.
    Issue Date
    2008-01-01
    Keywords
    chondrules
    tomography
    Siderophile elements
    CR carbonaceous chondrite meteorites
    
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    Citation
    Ebel, D. S., Weisberg, M. K., Hertz, J., & Campbell, A. J. (2008). Shape, metal abundance, chemistry, and origin of chondrules in the Renazzo (CR) chondrite. Meteoritics & Planetary Science, 43(10), 1725-1740.
    Publisher
    The Meteoritical Society
    Journal
    Meteoritics & Planetary Science
    URI
    http://hdl.handle.net/10150/656486
    DOI
    10.1111/j.1945-5100.2008.tb00639.x
    Additional Links
    https://meteoritical.org/
    Abstract
    We used synchrotron X-ray microtomography to image in 3-dimensions (3D) eight whole chondrules in a ~1 cm^3 piece of the Renazzo (CR) chondrite at ~17 micrometers per volume element (voxel) edge. We report the first volumetric (3D) measurement of metal/silicate ratios in chondrules and quantify indices of chondrule sphericity. Volumetric metal abundances in whole chondrules range from 1 to 37 volume % in 8 measured chondrules and by inspection in tomography data. We show that metal abundances and metal grain locations in individual chondrules cannot be reliably obtained from single random 2D sections. Samples were physically cut to intersect representative chondrules multiple times and to verify 3D data. Detailed 2D chemical analysis combined with 3D data yield highly variable whole-chondrule Mg/Si ratios with a supra-chondritic mean value, yet the chemically diverse, independently formed chondrules are mutually complementary in preserving chondritic (solar) Fe/Si ratios in the aggregate CR chondrite. These results are consistent with localized chondrule formation and rapid accretion resulting in chondrule + matrix aggregates (meteorite parent bodies) that preserve the bulk chondritic composition of source regions.
    Type
    Article
    text
    Language
    en
    ISSN
    1945-5100
    ae974a485f413a2113503eed53cd6c53
    10.1111/j.1945-5100.2008.tb00639.x
    Scopus Count
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    Meteoritics & Planetary Science, Volume 43, Number 10 (2008)

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