Hydrogen Production by Partial Oxidation Reforming of Methane over Ni Catalysts Supported on High and Low Surface Area Alumina and Zirconia

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ID: 260850
2020
The catalytic activity of the partial oxidation reforming reaction for hydrogen production over 10% Ni supported on high and low surface area alumina and zirconia was investigated. The reforming reactions, under atmospheric pressure, were performed with a feed molar ratio of CH4/O2 = 2.0. The reaction temperature was set to 450–650 °C. The catalytic activity, stability, and carbon formation were determined via TGA, TPO, Raman, and H2 yield. The catalysts were calcined at 600 and 800 °C. The catalysts were prepared via the wet-impregnation method. Various characterizations were conducted using BET, XRD, TPR, TGA, TPD, TPO, and Raman. The highest methane conversion (90%) and hydrogen yield (72%) were obtained at a 650 °C reaction temperature using Ni-Al-H-600, which also showed the highest stability for the ranges of the reaction temperatures investigated. Indeed, the time-on-stream for 7 h of the Ni-Al-H-600 catalyst displayed high activity and a stable profile when the reaction temperature was set to 650 °C.
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Authors Anis Fakeeha,Ahmed A. Ibrahim,Hesham Aljuraywi,Yazeed Alqahtani,Ahmad Alkhodair,Suliman Alswaidan,Ahmed E. Abasaeed,Samsudeen Olajide Kasim,Mahmud S. Lanre,Ahmed S. Al-Fatesh;Anis Fakeeha;Ahmed A. Ibrahim;Hesham Aljuraywi;Yazeed Alqahtani;Ahmad Alkhodair;Suliman Alswaidan;Ahmed E. Abasaeed;Samsudeen Olajide Kasim;Mahmud S. Lanre;Ahmed S. Al-Fatesh;
Journal processes
Year 2020
DOI 10.3390/pr8050499
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