An analysis of the performance of a membrane reactor for the production of pure hydrogen through ammonia decomposition is presented here. The system is numerically studied under a wide range of operating conditions to identify those most favorable for the production of pure hydrogen. The underlying idea is that, in the case of ammonia decomposition, a membrane reactor allows to operate at low temperature not only because the selective removal of hydrogen shifts the equilibrium of the reactor towards the products, but also because the reaction rate is enhanced by the removal of hydrogen, which at low temperatures inhibits the kinetics of ammonia decompositio
Hydrogen (H2) fuel obtained via thermo-catalytic ammonia (NH3) decomposition is rapidly attracting ...
Graduation date: 1992The purpose of this research is to study the\ud feasibility of combining reacti...
Liquid ammonia is a high-density (17.7 wt %) hydrogen carrier with a well-established production and...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
A mathematical model is used to simulate a bench-scale membrane reactor for the decomposition of amm...
Ammonia (NH3) is regarded as a promising medium of hydrogen storage, due to its large hydrogen stora...
Ammonia decomposition was studied in a multifunctional catalytic membrane reactor filled with Ruthe...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
A rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fixed bed m...
AbstractA rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fix...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
CO (X) -free hydrogen production from ammonia decomposition in a membrane reactor (MR) for PEM fuel ...
Signature redacted for privacy. Abstract approved: (.-i_I c(Dr. J Douglas Wa The purpose of this res...
Membrane reactors are attracting increasing interest because of the opportunity they represent in in...
Hydrogen (H2) fuel obtained via thermo-catalytic ammonia (NH3) decomposition is rapidly attracting ...
Graduation date: 1992The purpose of this research is to study the\ud feasibility of combining reacti...
Liquid ammonia is a high-density (17.7 wt %) hydrogen carrier with a well-established production and...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
A mathematical model is used to simulate a bench-scale membrane reactor for the decomposition of amm...
Ammonia (NH3) is regarded as a promising medium of hydrogen storage, due to its large hydrogen stora...
Ammonia decomposition was studied in a multifunctional catalytic membrane reactor filled with Ruthe...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
A rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fixed bed m...
AbstractA rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fix...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
CO (X) -free hydrogen production from ammonia decomposition in a membrane reactor (MR) for PEM fuel ...
Signature redacted for privacy. Abstract approved: (.-i_I c(Dr. J Douglas Wa The purpose of this res...
Membrane reactors are attracting increasing interest because of the opportunity they represent in in...
Hydrogen (H2) fuel obtained via thermo-catalytic ammonia (NH3) decomposition is rapidly attracting ...
Graduation date: 1992The purpose of this research is to study the\ud feasibility of combining reacti...
Liquid ammonia is a high-density (17.7 wt %) hydrogen carrier with a well-established production and...