Ultra highly pure hydrogen and more valuable hydrocarbons are produced directly from methane in one step beyond the thermodynamic equilibrium conversion by integration of the dehydrogenation reaction and hydrogen separation with a Pd-Ag based membrane reactor at mild temperatures, and a highly active catalyst is developed under the non-equilibrium reaction conditions
A rise in CO2 and other greenhouse gases’ concentration from gas refinery flares and furnaces in the...
Ultra-thin, high performance composite palladium membrane, developed via a novel electroless plating...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
A method is described for the conversion of naturally-occurring or biomass-derived lower to higher h...
Hydrogen can be obtained from multiple sources, renewable and fossil fuels: research and technologic...
The goal of this project is to develop catalysts and reaction conditions for catalytic cracking of h...
Syngas is an important feedstock for the production of higher hydrocarbons or methanol. It can be pr...
Pure hydrogen production from methane is a multi-step process run on a large scale for economic reas...
Hydrogen production from the steam reforming of liquid hydrocarbons over a self-made nickel catalyst...
Direct conversion of methane into hydrogen and valuable chemicals under nonoxidative conditions is a...
Conversion of methane to higher hydrocarbons has the potential as the substitute for liquid petroleu...
Currently, H-2 production techniques for application to proton exchange membrane fuel cells (PEMFC) ...
Rh-Mg-Al hydrotalcites were synthesized by coprecipitation, then calcined and reduced to obtain cata...
It has been found that the hydrogenation rate of diene hydrocarbons depends on the adsorption coeffi...
A rise in CO2 and other greenhouse gases’ concentration from gas refinery flares and furnaces in the...
A rise in CO2 and other greenhouse gases’ concentration from gas refinery flares and furnaces in the...
Ultra-thin, high performance composite palladium membrane, developed via a novel electroless plating...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...
A method is described for the conversion of naturally-occurring or biomass-derived lower to higher h...
Hydrogen can be obtained from multiple sources, renewable and fossil fuels: research and technologic...
The goal of this project is to develop catalysts and reaction conditions for catalytic cracking of h...
Syngas is an important feedstock for the production of higher hydrocarbons or methanol. It can be pr...
Pure hydrogen production from methane is a multi-step process run on a large scale for economic reas...
Hydrogen production from the steam reforming of liquid hydrocarbons over a self-made nickel catalyst...
Direct conversion of methane into hydrogen and valuable chemicals under nonoxidative conditions is a...
Conversion of methane to higher hydrocarbons has the potential as the substitute for liquid petroleu...
Currently, H-2 production techniques for application to proton exchange membrane fuel cells (PEMFC) ...
Rh-Mg-Al hydrotalcites were synthesized by coprecipitation, then calcined and reduced to obtain cata...
It has been found that the hydrogenation rate of diene hydrocarbons depends on the adsorption coeffi...
A rise in CO2 and other greenhouse gases’ concentration from gas refinery flares and furnaces in the...
A rise in CO2 and other greenhouse gases’ concentration from gas refinery flares and furnaces in the...
Ultra-thin, high performance composite palladium membrane, developed via a novel electroless plating...
In this work two alternatives are presented for increasing the purity of hydrogen produced in a memb...