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February 28, 2026Journal of the Japan Institute of Energy0 citationsOpen Access

Influence of Solution and Thermal Treatments on Porous Silica-Alumina Particles for Hydrolytic Dehydrogenation of Ammonia Borane

TUTetsuo UmegakiAHAyumi HABURMRiana MUNEYAMA

Key Points

  • The central aim is to explore how different treatments affect the activity of porous silica-alumina particles in dehydrogenating ammonia borane.
  • Investigated solution and thermal treatments of silica-alumina particles
  • Removed residual sodium using aqueous hydrochloric acid
  • Varying soaking times during the calcination process
  • Assessed hydrogen evolution from ammonia borane solution
  • The treated silica-alumina particles showed high hydrogen evolution rates
  • Increased protonic acid sites contributed to enhanced activity
  • Longest soaking time at 673 K for 9 hours yielded the highest dehydrogenation activity

Abstract

This study investigated the influence of solution and thermal treatments of porous silica-alumina particles on their activity in the hydrolytic dehydrogenation of ammonia borane. Most of the residual sodium in the sample after preparation of the silica-alumina precursors was removed by treatment with aqueous hydrochloric acid. The treated sample exhibited high hydrogen evolution from the aqueous ammonia borane solution, probably because of an increase in the number of protonic acid sites on the surface of the porous particles due to the solution treatment. The soaking time during the calcination process to obtain porous silica-alumina particles also influenced their activity in the dehydrogenation reaction, and the activity increased with increasing soaking time. The sample calcined at 673 K for 9 h, followed by treatment with aqueous hydrochloric acid, exhibited the highest dehydrogenation activity.

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Cite This Study

Umegaki et al. (2026) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02e9chttps://doi.org/10.3775/jie.105.27
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