Publication | Open Access
Anti-Coking and Anti-Sintering Ni/Al2O3 Catalysts in the Dry Reforming of Methane: Recent Progress and Prospects
100
Citations
81
References
2021
Year
EngineeringGas ConversionChemistryNi/al2o3 CatalystsCatalyst ActivationDrm ReactionsChemical EngineeringMetal SinteringRecent ProgressMaterials ScienceMaterials EngineeringCatalytic ApplicationAnti-sintering Ni/al2o3 CatalystsCatalytic MaterialCatalyst RecyclingCatalysisHydrogenCatalytic ProcessCokingCatalyst PreparationDry Reforming
Coking and metal sintering are limitations of large-scale applications of Ni/Al2O3 catalysts in DRM reactions. In this review, several modification strategies to enhance the anti-deactivation property of Ni/Al2O3 are proposed and discussed with the recently developed catalyst systems, including structure and morphology control, surface acidity/basicity, interfacial engineering and oxygen defects. In addition, the structure–performance relationship and deactivation/anti-deactivation mechanisms are illustrated in depth, followed by prospects for future work.
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