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    Shape and porosity of refractory inclusions in CV3 chondrites: A micro‐computed tomography (µCT) study

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    Authors
    Zhang, Mingming
    Clark, Brett
    King, Ashley J
    Russell, Sara S
    Lin, Yangting
    Issue date
    2021-04-26
    Submitted date
    2020-05-11
    
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    Abstract
    Abstract - Refractory calcium‐aluminum‐rich inclusions (CAIs) and amoeboid olivine aggregates (AOAs) in chondritic meteorites are the earliest solids of our solar system, bearing the information of nebular condensation as well as accretion and asteroidal shock and metasomatism processes. While the compositions of refractory inclusions have been intensely studied for ~50 years, their physical properties such as shape and porosity are poorly constrained. Here, we present a microcomputed tomography (µCT) study on 16 refractory inclusions of condensate origin in five CV3 chondrites. We find that they are prolate or triaxial in shape with very rough morphologies. The CAIs have nodular textures and are thought to form by agglomerating individual nodules via collision‐induced bouncing and/or fragmentation, where the nodules were grown by gas–solid reactions during condensation. On the parent body, refractory inclusions from the CV<jats:sub>R</jats:sub> meteorite Leoville experienced intense shocks that led to the flattening of their shapes and lowering of their porosities. High‐temperature metasomatism in CV<jats:sub>OxA</jats:sub> meteorites and low‐temperature metasomatism in CV<jats:sub>OxB</jats:sub> meteorites do not seem to have large effects on the porosities of their refractory inclusions, which have similar ranges and pore‐size distributions. Instead, we infer that their pores are mostly inherited from the gas–solid condensation and subsequent agglomeration processes. The porosities of CAIs are higher than those of AOAs, which is mainly due to the high‐temperature sintering process of AOAs.</jats:p>
    Citation
    Zhang, M., Clark, B., King, A.J., Russell, S.S. and Lin, Y. (2021), Shape and porosity of refractory inclusions in CV3 chondrites: A micro-computed tomography (µCT) study. Meteorit Planet Sci, 56: 500-514. https://doi.org/10.1111/maps.13635
    Publisher
    Wiley
    Journal
    Meteoritics &amp; Planetary Science
    URI
    http://hdl.handle.net/10141/623130
    DOI
    10.1111/maps.13635
    Type
    Journal Article
    Item Description
    Copyright © 2021 The Meteoritical Society (MET). The attached file is the published version of the article.
    NHM Repository
    ISSN
    1086-9379
    EISSN
    1945-5100
    ae974a485f413a2113503eed53cd6c53
    10.1111/maps.13635
    Scopus Count
    Collections
    Earth sciences

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