Catalytic dehydrogenation of isobutane in the presence of hydrogen over Cs-modified Ni2P supported on active carbon
•Ni2P catalyst is tested in dehydrogenation of isobutane for the first time.•The effects of Cs promoter on catalytic performance of Ni2P/AC were investigated.•Cs-Ni2P/AC exhibits high activity and selectivity for isobutane dehydrogenation. In this article, an environmentally friendly non-noble-metal...
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Veröffentlicht in: | Applied surface science 2014-10, Vol.316, p.163-170 |
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Sprache: | eng |
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Zusammenfassung: | •Ni2P catalyst is tested in dehydrogenation of isobutane for the first time.•The effects of Cs promoter on catalytic performance of Ni2P/AC were investigated.•Cs-Ni2P/AC exhibits high activity and selectivity for isobutane dehydrogenation.
In this article, an environmentally friendly non-noble-metal class of Cs-Ni2P/active carbon (AC) catalyst was prepared and demonstrated to exhibit enhanced catalytic performance in isobutane dehydrogenation. The results of activity tests reveal that Ni/AC catalyst was highly active for isobutane cracking, which led to the formation of abundant methane and coke. After the introduction of phosphorus through impregnation with ammonium di-hydrogen phosphate and H2-temperature programmed reduction, undesired cracking reactions were effectively inhibited, and the selectivity to isobutene and stability of catalyst increased remarkably. The characterization results indicate that, after the addition of phosphorous, the improvement of dehydrogenation selectivity is ascribed to the partial positive charges carried on Ni surface in Ni2P particles, which decreases the strength of NiC bond between Ni and carbonium-ion intermediates and the possibility of excessive dehydrogenation. In addition, Cs-modified Ni2P/AC catalysts display much higher catalytic performance as compared to Ni2P/AC catalyst. Cs-Ni2P-6.5 catalyst has the highest catalytic performance, and the selectivity to isobutene higher than 93% can be obtained even after 4h reaction. The enhancement in catalytic performance of the Cs-modified catalysts is mainly attributed to the function of Cs to improve the dispersion of Ni2P particles, transfer electron from Cs to Ni, and decrease acid site number and strength. |
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ISSN: | 0169-4332 1873-5584 |
DOI: | 10.1016/j.apsusc.2014.07.119 |