4.6 Article

Highly Selective Syngas/H2 Production via Partial Oxidation of CH4 Using (Ni, Co and Ni-Co)/ZrO2-Al2O3 Catalysts: Influence of Calcination Temperature

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PROCESSES
卷 7, 期 3, 页码 -

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MDPI
DOI: 10.3390/pr7030141

关键词

Al2O3; bimetallic catalyst; syngas; methane; partial oxidation; ZrO2

资金

  1. Deanship of Scientific Research at King Saud University [RGP-119]

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In this study, Ni, Co and Ni-Co catalysts supported on binary oxide ZrO2-Al2O3 were synthesized by sol-gel method and characterized by means of various analytical techniques such as XRD, BET, TPR, TPD, TGA, SEM, and TEM. This catalytic system was then tested for syngas respective H-2 production via partial oxidation of methane at 700 degrees C and 800 degrees C. The influence of calcination temperatures was studied and their impact on catalytic activity and stability was evaluated. It was observed that increasing the calcination temperature from 550 degrees C to 800 degrees C and addition of ZrO2 to Al2O3 enhances Ni metal-support interaction. This increases the catalytic activity and sintering resistance. Furthermore, ZrO2 provides higher oxygen storage capacity and stronger Lewis basicity which contributed to coke suppression, eventually leading to a more stable catalyst. It was also observed that, contrary to bimetallic catalysts, monometallic catalysts exhibit higher activity with higher calcination temperature. At the same time, Co and Ni-Co-based catalysts exhibit higher activity than Ni-based catalysts which was not expected. The Co-based catalyst calcined at 800 degrees C demonstrated excellent stability over 24 h on stream. In general, all catalysts demonstrated high CH4 conversion and exceptionally high selectivity to H-2 (98%) at 700 degrees C.

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