Low-temperature steam reforming is an interesting alternative to traditional hydrogen production methods, making it possible to couple the reactor with solar heating. The main limitation in this process is imposed by thermodynamic equilibrium, which may be overcome by considering the use of a pre-reformer, in which equilibrium conversions are easily reached, followed by a membrane reactor, in which additional hydrogen production takes place along with its separation from the other products. This work is based on an overview of studies previously carried out by the same authors on the influence of pressure on the interplay between transport, permeation, and reaction in methane steam reforming membrane reactors and focuses on the behaviour of...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
Membrane reactors have been proposed for many different applications, in particular for hydrogen pro...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
A mathematical modelling of one-dimensional, stationary and isothermic membrane reactor for methane ...
A typical hydrogen-production system consisting of a pre-reformer catalytic reactor and a membrane r...
The study of integrated membrane reactors for the production of pure hydrogen is attracting increasi...
Membrane reactors for hydrogen production have been extensively studied in the past years due to the...
Catalytic reactors equipped with dense metallic membranes for hydrogen production are attracting inc...
The success of membrane reactors for hydrogen separation depends significantly on the development o...
For an effective operation of a membrane reactor in comparison with a conventional fixed-bed reactor...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
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...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
Membrane reactors have been proposed for many different applications, in particular for hydrogen pro...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...
A mathematical modelling of one-dimensional, stationary and isothermic membrane reactor for methane ...
A typical hydrogen-production system consisting of a pre-reformer catalytic reactor and a membrane r...
The study of integrated membrane reactors for the production of pure hydrogen is attracting increasi...
Membrane reactors for hydrogen production have been extensively studied in the past years due to the...
Catalytic reactors equipped with dense metallic membranes for hydrogen production are attracting inc...
The success of membrane reactors for hydrogen separation depends significantly on the development o...
For an effective operation of a membrane reactor in comparison with a conventional fixed-bed reactor...
The methane steam-reforming reaction has been investigated from a modeling point of view, considerin...
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...
The methane steam reforming reaction has been investigated from a modelling viewpoint, considering t...
Membrane reactors have been proposed for many different applications, in particular for hydrogen pro...
International audienceA bubbling fluidized bed membrane reactor for steam reforming of methane is ma...