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January 20, 2026International Journal of Energy Research0 citationsOpen Access

Cl‐Free Ru Catalysts for Ammonia Decomposition Prepared by Chemical Reduction: Effects of Thermal Treatment

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EYEunju YooJKJiyull KimSHSung Beom Hwang

Key Points

  • This research aims to evaluate the effectiveness of Cl-free Ru catalysts for ammonia decomposition and examine the effects of thermal treatment.
  • Synthesized Ru/Al2O3 catalysts using chemical reduction with ruthenium chloride and NaBH4.
  • Conducted thermal treatments at varying calcination temperatures.
  • Characterized physicochemical properties of the catalysts and evaluated catalytic performance against wet impregnation methods.
  • Uncalcined catalysts show excellent catalytic activity in ammonia decomposition, maintaining a conversion rate of approximately 97% over 100 hours at 550°C.
  • Calcination increases led to decreased Ru dispersion due to particle agglomeration.
  • Wet impregnation resulted in residual Cl, negatively affecting catalytic performance.

Abstract

Ru/Al 2 O 3 catalysts were synthesized via a chemical reduction method using ruthenium chloride as the precursor and subsequently subjected to different calcination temperatures. The catalysts’ physicochemical properties were characterized, and their catalytic performance in ammonia decomposition was evaluated. For comparison, Ru/Al 2 O 3 catalysts were also prepared via a wet impregnation method to assess the effectiveness of the chemical reduction approach in removing Cl residues. In the chemical reduction process, ruthenium precursor was fully converted to metallic ruthenium using a NaBH 4 solution, which was subsequently dispersed onto an alumina support. Nevertheless, there was residual Cl on the catalysts prepared by wet impregnation even after calcination process, which has negative effect on the ammonia cracking reaction. As the calcination temperature increased, Ru dispersion decreased owing to the agglomeration of Ru particles. The uncalcined catalyst synthesized via chemical reduction exhibited excellent and sustained catalytic activity in the ammonia decomposition reaction. It consistently maintained an ammonia conversion rate of approximately 97% over 100 h at 550°C.

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Cite This Study

Yoo et al. (2026) studied this question.

synapsesocial.com/papers/696f1b189e64f732b51ef1fdhttps://doi.org/10.1155/er/6686536
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