Density Functional Theory Study on the Reaction Mechanism of Spinel CoFe2O4 with CO during Chemical-Looping Combustion

2019 
Owing to the synergistic enhanced performance by incorporating Co atoms into the Fe-based oxide, spinel-type CoFe2O4 is regarded as a promising oxygen carrier. Herein, the reaction mechanism of CoFe2O4 with CO during chemical-looping combustion (CLC) was comprehensively studied based on density functional theory (DFT) calculations. The results reveal that the existence of Co atoms in CoFe2O4 is primarily responsible for the improved reactivity. On both the perfect and defective CoFe2O4 (100) surfaces, Co atoms are the preferable sites for CO adsorption. In particular, the presence of surface O vacancy will weaken CO adsorption. Three types of surface O coordinated with three different metal atoms show different reactivity. Two reaction channels for CO oxidation were proposed on the perfect surface. For the one-step channel, CO can react barrierlessly with the surface O coordinated with two Co and one Fe atoms to form CO2 molecule. The three-step channel beginning with the Co site shows more kinetically an...
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