Dry methane reforming (DRM) presents a viable pathway for converting greenhouse gases into useful syngas. Nevertheless, the procedure requires robust and reasonably priced catalysts. This study explored using cost-effective cobalt and nickel combined into a single catalyst with different metal ratios. The reaction was conducted in a fixed reactor at 700â°C. The findings indicate that the incorporation of cobalt significantly enhances catalyst performance by preventing metal sintering, improving metal dispersion, and promoting beneficial metal-support interactions. The best-performing catalyst (3.75Ni+1.25Co-ScCeZr) achieved a good conversion rate of CH(4) and CO(2) at 46.8â%, and 60â% respectively after 330â minutes while maintaining good stability. The TGA and CO(2)-TPD analysis results show that the addition of Co to Ni reduces carbon formation, and increases the amount of strong basic sites and isolated O(2)- species, and the total amount of CO(2) desorbed. These results collectively highlight the potential of cobalt-nickel catalysts for practical DRM applications and contribute to developing sustainable energy technologies.
Ni-Co Bimetallic Catalysts Supported on Mixed Oxides (Sc-Ce-Zr) for Enhanced Methane Dry Reforming.
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作者:Abasaeed Ahmed E, Ibrahim Ahmed A, Fakeeha Anis H, Bayazed Mohammed O, Amer Mabrook S, Abu-Dahrieh Jehad K, Al-Fatesh Ahmed S
| 期刊: | ChemistryOpen | 影响因子: | 3.100 |
| 时间: | 2024 | 起止号: | 2024 Dec;13(12):e202400086 |
| doi: | 10.1002/open.202400086 | ||
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