This work investigates the influence of porous catalyst structural parameters on a packed bed reactor’s performance, through the application of a multiscale reactor model. Constitutive equations, at the catalytic pellet and packed bed reactor length scales, are derived using the Reynolds transport theorem. Diffusive fluxes in the microscale (catalytic pellet) and macroscale (reactor) domains are calculated using the dusty gas model (DGM) and Stefan–Maxwell model (SMM) equations respectively, while Chapman–Enskog theory is applied to estimate diffusion and viscosity coefficients. Simulations are carried out for a case study on hydrogen production through steam methane reforming, using a finite element numerical scheme. The employed multiscal...
A proper selection of steam reforming catalyst geometry has a direct effect on the efficiency and ec...
The success of membrane reactors for hydrogen separation depends significantly on the development o...
Shaped catalysts are widely used in steam reforming. A comprehensive mathematical model able to pred...
In this work, a consistent mathematical model to simulate a spherical catalytic pellet and a Packed-...
A multi-scale model is presented for a steam methane reforming reactor. The reactor is a typical top...
Various transport phenomena in conjunction with chemical reactions are strongly affected by reformer...
The multi-scale modeling of ZoneFlowTM structured catalytic reactors for steam methane reforming is ...
There are various physical processes (such as mass, heat and momentum transport) integrated with cat...
Graduation date: 2010Numerical modeling of methane-steam reforming is performed in a micro/mini-chan...
Various transport phenomena in conjunction with chemical reactions are strongly affected by reformer...
Packed bed reactors are broadly used in industry and are under consideration for novel reactor conc...
AbstractIn the present study, the performance of a combined catalyst/sorbent pellet design for the s...
Mass, heat and momentum transport processes are coupled with catalytic chemical reactions in a metha...
Methane reforming is the most widely practiced process for the production of hydrogen and syngas. Th...
Given the intrinsic kinetics, the tortuosity factor of a Ni/MgAI,O, catalyst was determined under re...
A proper selection of steam reforming catalyst geometry has a direct effect on the efficiency and ec...
The success of membrane reactors for hydrogen separation depends significantly on the development o...
Shaped catalysts are widely used in steam reforming. A comprehensive mathematical model able to pred...
In this work, a consistent mathematical model to simulate a spherical catalytic pellet and a Packed-...
A multi-scale model is presented for a steam methane reforming reactor. The reactor is a typical top...
Various transport phenomena in conjunction with chemical reactions are strongly affected by reformer...
The multi-scale modeling of ZoneFlowTM structured catalytic reactors for steam methane reforming is ...
There are various physical processes (such as mass, heat and momentum transport) integrated with cat...
Graduation date: 2010Numerical modeling of methane-steam reforming is performed in a micro/mini-chan...
Various transport phenomena in conjunction with chemical reactions are strongly affected by reformer...
Packed bed reactors are broadly used in industry and are under consideration for novel reactor conc...
AbstractIn the present study, the performance of a combined catalyst/sorbent pellet design for the s...
Mass, heat and momentum transport processes are coupled with catalytic chemical reactions in a metha...
Methane reforming is the most widely practiced process for the production of hydrogen and syngas. Th...
Given the intrinsic kinetics, the tortuosity factor of a Ni/MgAI,O, catalyst was determined under re...
A proper selection of steam reforming catalyst geometry has a direct effect on the efficiency and ec...
The success of membrane reactors for hydrogen separation depends significantly on the development o...
Shaped catalysts are widely used in steam reforming. A comprehensive mathematical model able to pred...