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  4. Effect of the Active Metal on the NOx Formation during Catalytic Combustion of Ammonia SOFC Off-Gas
 
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October 7, 2022
Journal Article
Title

Effect of the Active Metal on the NOx Formation during Catalytic Combustion of Ammonia SOFC Off-Gas

Abstract
Catalytic combustion of hydrogen and ammonia containing off-gas surrogate from an ammonia solid oxide fuel cell (SOFC) was studied with a focus on nitrogen oxides (NOx) mitigation. Noble and transition metals (Pt, Pd, Ir, Ru, Rh, Cu, Fe, Ni) supported on Al2O3 were tested in the range of 100 to 800 °C. The tested catalysts were able to completely convert hydrogen and ammonia present in the off-gas. The selectivity to NOx increased with reaction temperature and stagnated at temperatures of 600 °C and higher. At low temperatures, the formation of N2O was evident, which declined with increasing temperature until no N2O was observed at temperatures exceeding 400 °C. Over nickel and iridium-based catalysts, the NOx formation was reduced drastically, especially at 300 to 400 °C. To the best knowledge of the authors, the current paper is the first study about catalytic combustion of hydrogen-ammonia mixtures as a surrogate of an ammonia-fed SOFC off-gas.
Author(s)
Weißenberger, Tobias
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM  
Zapf, Ralf  
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM  
Pennemann, Helmut  
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM  
Kolb, Gunther  
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM  
Journal
Catalysts  
Project(s)
Piloting Multi MW Ammonia Ship Fuel Cells  
Funding(s)
H2020  
Funder
Open Access
DOI
10.3390/catal12101186
Additional full text version
Landing Page
Language
English
Fraunhofer-Institut für Mikrotechnik und Mikrosysteme IMM  
Keyword(s)
  • ammonia

  • selective catalytic oxidation

  • SCO

  • SOFC

  • solid oxide fuel cell

  • catalytic combustion

  • nitrogen oxides

  • microreactor

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