• Title of article

    New insights into the thermal desorption of the 2LiNH2 + KBH4 + LiH mixture

  • Author/Authors

    Valentoni، نويسنده , , Antonio and Garroni، نويسنده , , Sebastiano and Pistidda، نويسنده , , Claudio and Masolo، نويسنده , , Elisabetta and Napolitano، نويسنده , , Emilio and Moretto، نويسنده , , Pietro and Dornheim، نويسنده , , Martin and Mulas، نويسنده , , Gabriele and Enzo، نويسنده , , Stefano، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    8
  • From page
    17075
  • To page
    17082
  • Abstract
    In situ two-dimensional synchrotron X-ray powder diffraction investigation combined with Rietveld method data analysis were performed in order to yield a complete and quantitative phases structure evolution of the polycrystalline mixture 2LiNH2 + KBH4 + LiH during H2 desorption. While a first-principles, purely thermodynamics approach of the system predicted a single dehydrogenation step reaction at relatively low temperatures, it is assessed experimentally that the reaction occurs in two steps with first the formation of Li2NH at ca. 230 °C due to the reaction between LiNH2 and LiH plus hydrogen and ammonia evolution, followed by an additional reaction of the resulting phases with KBH4 at 360 °C, which releases hydrogen and leads to the formation of the monoclinic and tetragonal Li3BN2 polymorphs. Besides pointing out possible limits of a purely thermodynamics approach inevitably relying exact knowledge of experimental quantities, it is concluded that before assuming it viable for on-board vehicle use, additional stoichiometries may be worth of investigation in order to assess any existence of lower hydrogen desorption temperature of such system.
  • Keywords
    Hydrogen storage materials , In situ synchrotron X-ray diffraction , Multicomponent complex hydrides , Rietveld refinement
  • Journal title
    International Journal of Hydrogen Energy
  • Serial Year
    2014
  • Journal title
    International Journal of Hydrogen Energy
  • Record number

    1870286