Ammonia (NH3) is regarded as a promising medium of hydrogen storage, due to its large hydrogen storage density, decent performance on safety and moderate storage conditions. On the user side, NH3 is generally required to decompose into hydrogen for utilization in fuel cells, and therefore it is vital for the NH3-based hydrogen storage technology development to study NH3 decomposition processes and improve the decomposition efficiency. Numerical simulation has become a powerful tool for analyzing the NH3 decomposition processes since it can provide a revealing insight into the heat and mass transfer phenomena and substantial guidance on further improving the decomposition efficiency. This paper reviews the numerical simulations of NH3 decomp...
In this work, the prospect of producing hydrogen (H2) via ammonia (NH3) decomposition was evaluated ...
A mathematical model is used to simulate a bench-scale membrane reactor for the decomposition of amm...
Hydrogen is a promising fuel for the future, capable of meeting the demands of energy storage and lo...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
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 ...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
CO (X) -free hydrogen production from ammonia decomposition in a membrane reactor (MR) for PEM fuel ...
Hydrogen production from an ammonia-fuelled microchannel reactor is simulated in a three-dimensional...
In this work, an integrated experimental and CFD modelling technique was used to evaluate a microcha...
Because of the problems associated with the generation and storage of hydrogen in portable applicati...
AbstractA rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fix...
PhD (Chemical Engineering), North-West University, Potchefstroom Campus, 2015In this thesis, ammonia...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
A rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fixed bed m...
In this work, the prospect of producing hydrogen (H2) via ammonia (NH3) decomposition was evaluated ...
A mathematical model is used to simulate a bench-scale membrane reactor for the decomposition of amm...
Hydrogen is a promising fuel for the future, capable of meeting the demands of energy storage and lo...
Ammonia decomposition in an integrated Catalytic Membrane Reactor for hydrogen production was studie...
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 ...
Hydrogen is often regarded as an ideal energy carrier. Its use in energy conversion devices does in ...
CO (X) -free hydrogen production from ammonia decomposition in a membrane reactor (MR) for PEM fuel ...
Hydrogen production from an ammonia-fuelled microchannel reactor is simulated in a three-dimensional...
In this work, an integrated experimental and CFD modelling technique was used to evaluate a microcha...
Because of the problems associated with the generation and storage of hydrogen in portable applicati...
AbstractA rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fix...
PhD (Chemical Engineering), North-West University, Potchefstroom Campus, 2015In this thesis, ammonia...
The membrane reactor is proposed in this work as a system with high potential to efficiently recover...
A rigorous heterogeneous mathematical model is used to simulate a cascade of multi-stage fixed bed m...
In this work, the prospect of producing hydrogen (H2) via ammonia (NH3) decomposition was evaluated ...
A mathematical model is used to simulate a bench-scale membrane reactor for the decomposition of amm...
Hydrogen is a promising fuel for the future, capable of meeting the demands of energy storage and lo...