A rigorous mathematical model is used for the simulation of steam and CO2 reforming in fluidized bed membrane reactors. A well-mixed catalyst pattern is implemented to couple the reactions. It has been shown that the combined effect of the membrane and reaction coupling provides exciting opportunities to overcome the equilibrium conversion limits and to achieve complete conversion of methane. The results indicate that the complete conversion of methane at low temperature is possible. Optimal conditions are observed to exist and an effective reactor length criterion is used to evaluate the reactor performance. The influence of some key parameters on the optimal conditions and the reactor such as temperature, pressure, steam to carbon ratio a...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
A generalized comprehensive model, coupled with experimentation in a pilot reactor, is developed to ...
The simulation of a dense Pd-based membrane reactor for carrying out the methane, the methanol and t...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
The theme of this work is to investigate the performance of cocurrent and countercurrent fluidized b...
Steam reforming of light hydrocarbons, especially natural gas, is an industrially important chemica...
This work investigates the production of pure hydrogen by steam methane reforming in a fluidized bed...
Methane steam reforming has been carried out in a Pd-Ru membrane reactor at 500-600°C. The membrane ...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
A mathematical modelling of one-dimensional, stationary and isothermic membrane reactor for methane ...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
Membrane reactors have been proposed for many different applications, in particular for hydrogen pro...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
A generalized comprehensive model, coupled with experimentation in a pilot reactor, is developed to ...
The simulation of a dense Pd-based membrane reactor for carrying out the methane, the methanol and t...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
The theme of this work is to investigate the performance of cocurrent and countercurrent fluidized b...
Steam reforming of light hydrocarbons, especially natural gas, is an industrially important chemica...
This work investigates the production of pure hydrogen by steam methane reforming in a fluidized bed...
Methane steam reforming has been carried out in a Pd-Ru membrane reactor at 500-600°C. The membrane ...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
A mathematical modelling of one-dimensional, stationary and isothermic membrane reactor for methane ...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
Membrane reactors have been proposed for many different applications, in particular for hydrogen pro...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
A generalized comprehensive model, coupled with experimentation in a pilot reactor, is developed to ...
The simulation of a dense Pd-based membrane reactor for carrying out the methane, the methanol and t...