Liquid ammonia is a high-density (17.7 wt %) hydrogen carrier with a well-established production and distribution infrastructure. Efficient decomposition and purification are essential for its use as a hydrogen-storage material. Here we demonstrate the production of high-purity (>99.7%) H2 from NH3 using a catalytic membrane reactor (CMR) in which a Ru catalyst is impregnated within a porous yttria-stabilized zirconia (YSZ) tube coated with a thin, 6 μm Pd film by electroless deposition. The intimate proximity of catalyst and membrane eliminates transport resistances that limit performance in the conventional packed-bed membrane reactor (PBMR) configuration. The addition of a Cs promoter enabled complete NH3 conversion at temperatures as lo...
One of the major challenges to be overcome before hydrogen fuelled vehicles can become commonplace i...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
The use of ammonia as a hydrogen carrier requires efficient cracking technology. A promising solutio...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
The combination of catalytic decomposition of ammonia and in situ separation of hydrogen holds great...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
Ammonia decomposition was studied in a multifunctional catalytic membrane reactor filled with Ruthe...
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...
An analysis of the performance of a membrane reactor for the production of pure hydrogen through amm...
Hydrogen (H2) fuel obtained via thermo-catalytic ammonia (NH3) decomposition is rapidly attracting ...
Ammonia is a widely produced industrial chemical, primarily for use in the fertilizer industry. Rece...
One of the major challenges to be overcome before hydrogen fuelled vehicles can become commonplace i...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
The use of ammonia as a hydrogen carrier requires efficient cracking technology. A promising solutio...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
The combination of catalytic decomposition of ammonia and in situ separation of hydrogen holds great...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
Ammonia decomposition was studied in a multifunctional catalytic membrane reactor filled with Ruthe...
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...
An analysis of the performance of a membrane reactor for the production of pure hydrogen through amm...
Hydrogen (H2) fuel obtained via thermo-catalytic ammonia (NH3) decomposition is rapidly attracting ...
Ammonia is a widely produced industrial chemical, primarily for use in the fertilizer industry. Rece...
One of the major challenges to be overcome before hydrogen fuelled vehicles can become commonplace i...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
The use of ammonia as a hydrogen carrier requires efficient cracking technology. A promising solutio...