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    Thermal properties of thermochemical heat storage materials

    82175.pdf (497.0Kb)
    Access Status
    Open access
    Authors
    Bird, Julianne
    Humphries, Terry
    Paskevicius, Mark
    Poupin, Lucas
    Buckley, Craig
    Date
    2020
    Type
    Journal Article
    
    Metadata
    Show full item record
    Citation
    Bird, J.E. and Humphries, T.D. and Paskevicius, M. and Poupin, L. and Buckley, C.E. 2020. Thermal properties of thermochemical heat storage materials. Physical Chemistry Chemical Physics. 22 (8): pp. 4617-4625.
    Source Title
    Physical Chemistry Chemical Physics
    DOI
    10.1039/c9cp05940g
    ISSN
    1463-9076
    Faculty
    Faculty of Science and Engineering
    School
    School of Electrical Engineering, Computing and Mathematical Sciences (EECMS)
    Funding and Sponsorship
    http://purl.org/au-research/grants/arc/FT160100303
    http://purl.org/au-research/grants/arc/LP150100730
    http://purl.org/au-research/grants/arc/DP150101708
    URI
    http://hdl.handle.net/20.500.11937/82097
    Collection
    • Curtin Research Publications
    Abstract

    This journal is © the Owner Societies. The thermal conductivity, thermal diffusivity and heat capacity of materials are all vital properties in the determination of the efficiency of a thermal system. However, the thermal transport properties of heat storage materials are not consistent across previous studies, and are strongly dependent on the sample composition and measurement method. A comprehensive analysis of thermal transport properties using a consistent preparation and measurement method is lacking. This study aims to provide the foundation for a detailed insight into thermochemical heat storage material properties with consistent measurement methods. The thermal transport properties of pelletised metal hydrides, carbonates and oxides were measured using the transient plane source method to provide the thermal conductivity, thermal diffusivity and heat capacity. This information is valuable in the development of energy storage and chemical processing systems that are highly dependent on the thermal conductivity of materials.

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