Litcius/Paper detail

Role of Ca, Cr, Ga and Gd promotor over lanthana‐zirconia–supported Ni catalyst towards H<sub>2</sub>‐rich syngas production through dry reforming of methane

Ahmed S. Al‐Fatesh, Jyoti Khatri, Rawesh Kumar, V. K. Srivastava, Ahmed I. Osman, Tahani Saad Algarni, Ahmed A. Ibrahim, Ahmed E. Abasaeed, Anis H. Fakeeha, David W. Rooney

2022Energy Science & Engineering37 citationsDOIOpen Access PDF

Abstract

Abstract Hydrogen production through methane dry reforming holds the promise of lowering greenhouse gases, that is CO 2 and CH 4 , concentrations. Herein, Ca‐, Cr‐, Ga‐ and Gd‐promoted lanthana‐zirconia–supported Ni catalysts are investigated and characterized by X‐ray diffraction, Raman, infrared and UV‐vis spectroscopy, CH 4 ‐temperature programmed surface reaction and cyclic reduction‐desorption experiment. All promoted catalyst systems had high and constant hydrogen yield (&gt;70%) due to pronounced reoxidation capacity of reduced ‘NiO species strongly interacted with support’ through oxygen replenishment by CO 2 . The presence of mixed oxide and regeneration of reduced catalyst up to optimum level through oxygen replenishment by CO 2 in Gd, as well as Cr‐promoted catalyst, outperformed (80% initially) than other promotors, Ca and Ga. In the long run (440 min to 33 h), Cr‐promoted catalyst system performed better than Gd‐promoted catalyst system as H 2 yield remained constant ~79% due to the smallest energy gap between valance and conduction band, Ni‐Cr interaction species for wide range CH 4 decomposition and chromate species for profound carbon deposit oxidation.

Topics & Concepts

CatalysisSyngasChemistryMethaneInorganic chemistryHydrogen productionHydrogenCarbon dioxide reformingOrganic chemistryCatalytic Processes in Materials ScienceCatalysts for Methane ReformingCatalysis and Oxidation Reactions