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This study deals with the phenomena occuring at single-pellet catalyst scale for the oxidative coupling of methane where heat transfer plays an important role. Computational fluid dynamics (CFD) is used for obtaining detailed rate and temperature profiles through the porous catalytic pellet where reaction and diffusion compete. Intra-particle temperature and concentration gradients were taken into...
In this study a mathematical model of a small scale single pellet for the oxidative coupling of methane (OCM) over titanite pervoskite is developed. The method is based on a computational fluid dynamics (CFD) code which known as Fluent may be adopted to model the reactions that take place inside the porous catalyst pellet. The steady state single pellet model is coupled with a kinetic model and the...
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