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Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping
Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping
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Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping
Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping

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Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping
Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping
Journal Article

Modulating Propane Dehydrogenation Performance and Stability of Ni.sub.2P with Co Doping

2024
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Overview
Non-oxidative propane dehydrogenation is an endothermic reaction requiring thermally stable and regenerable catalysts to produce propylene. In this work, we investigate bimetallic Co.sub.XNi.sub.2-XP as an alternative, non-noble metal propane dehydrogenation catalyst. Co.sub.1Ni.sub.1P displayed higher propylene selectivity than Co.sub.2P and higher site-normalized propylene production rates than Ni.sub.2P. Different compositions of Co.sub.XNi.sub.2-XP catalysts were evaluated for propane dehydrogenation with oxidative regeneration in between each cycle. Ni-rich Co.sub.0.5Ni.sub.1.5P showed increased propylene production upon regeneration due to the formation of the Ni.sub.12P.sub.5 phase during reaction. In contrast, Co.sub.1Ni.sub.1P and Co.sub.1.25Ni.sub.0.75P showed the ability to recover > 50% of the initial activity for at least 3 oxidative regenerations, while maintaining high propylene selectivity without any phase change. This study showcases the enhancement in stability and propane dehydrogenation performance of Ni.sub.2P through Co incorporation and Ni:Co ratio control.
Publisher
Springer

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