Most of the hydrogen production processes are designed for large-scale industrial uses and are not suitable for a compact hydrogen device to be used in systems like solid polymer fuel cells. Integrating the reaction step, the gas purification and the heat supply can lead to small-scale hydrogen production systems. The aim of this research is to study the influence of several reaction parameters on hydrogen production using liquid phase reforming of sugar solution over Pt, Pd, and Ni supported on nanostructured supports. It was found that the desired catalytic pathway for H production involves cleavage of C-C, C-H and O-H bonds that adsorb on the catalyst surface. Thus a good catalyst for production of H by liquid-phase reforming must facili...
Bio-oil model compounds dry (CO2) reforming for hydrogen production over Ni/Al2O3 catalyst is presen...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Hydrogen has the potential to fuel the energy needs of a more sustainable society. As hydrogen is no...
Most of the hydrogen production processes are designed for large-scale industrial uses and are not s...
Sugarcane is an ideal source of hydrogen in Australia. The influence of several reaction parameters ...
Hydrogen is anticipated to become a major source of energy in the future. Hydrogen is a clean burnin...
In the fields of energy science, it is a challenging issue to develop a highly active catalyst for h...
Pt catalysts supported on Al(2)O(3), activated carbon (AC), HUSY, and SiO(2) were prepared and chara...
The activities and stabilities of Pt, Ni, Co, and Cu catalysts for H(2) production by aqueous-phase ...
Lack of efficient hydrogen storage intermediate has boosted the development of fuel processor or eco...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Pt catalysts supported on Al2O3, activated carbon (AC), HUSY, and SiO2 were prepared and characteriz...
Since Pt is an expensive noble metal, enhancement of activity of Pt-based catalysts is important. In...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Bio-oil model compounds dry (CO2) reforming for hydrogen production over Ni/Al2O3 catalyst is presen...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Hydrogen has the potential to fuel the energy needs of a more sustainable society. As hydrogen is no...
Most of the hydrogen production processes are designed for large-scale industrial uses and are not s...
Sugarcane is an ideal source of hydrogen in Australia. The influence of several reaction parameters ...
Hydrogen is anticipated to become a major source of energy in the future. Hydrogen is a clean burnin...
In the fields of energy science, it is a challenging issue to develop a highly active catalyst for h...
Pt catalysts supported on Al(2)O(3), activated carbon (AC), HUSY, and SiO(2) were prepared and chara...
The activities and stabilities of Pt, Ni, Co, and Cu catalysts for H(2) production by aqueous-phase ...
Lack of efficient hydrogen storage intermediate has boosted the development of fuel processor or eco...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Pt catalysts supported on Al2O3, activated carbon (AC), HUSY, and SiO2 were prepared and characteriz...
Since Pt is an expensive noble metal, enhancement of activity of Pt-based catalysts is important. In...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Bio-oil model compounds dry (CO2) reforming for hydrogen production over Ni/Al2O3 catalyst is presen...
Aqueous-phase reforming (APR) can convert methanol and other oxygenated hydrocarbons to hydrogen and...
Hydrogen has the potential to fuel the energy needs of a more sustainable society. As hydrogen is no...