Optimising catalyst and membrane performance and performing a fundamental analysis on the dehydrogenation of ethanol and 2-butanol in a catalytic membrane reactor b
Coupling the dehydrogenation of ethylbenzene to styrene with the hydrogenation of nitrobenzene to an...
The ethanol steam reforming reaction has been considered for producing pure hydrogen to be used for ...
The objective of this research study is to demonstrate the effectiveness of a catalytic membrane rea...
Early efforts in 1992 were focused on relocating the membrane reactor system from Alcoa Separation T...
After the biomass pretreatment and fermentation processes, the purification step constitutes a major...
Dehydration of 1-butanol over the catalytic membrane was carried out in a tubular membrane reactor. ...
The dehydrogenation of isobutane on a commercial chromia-alumina catalyst was studied using a conven...
The use of membrane reactors in industrial processes leads to high efficiencies because the reaction...
A rigorous two-dimensional mathematical model is used to simulate a bench-scale membrane reactor for...
© 2018, The Author(s). A catalytic membrane reactor with a Au–Pd catalyst, impregnated at the inner ...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
Conventional fossil fuels such as gasoline or diesel should be substituted in the future by environm...
The partial oxidation of butane to maleic anhydride in a membrane reactor with improved heat transfe...
The potential of using various types and configurations of membranes in reactors attracts already a ...
Hybrid ethanol dehydration systems are modeled and optimized using MINLP. The systems consist of a d...
Coupling the dehydrogenation of ethylbenzene to styrene with the hydrogenation of nitrobenzene to an...
The ethanol steam reforming reaction has been considered for producing pure hydrogen to be used for ...
The objective of this research study is to demonstrate the effectiveness of a catalytic membrane rea...
Early efforts in 1992 were focused on relocating the membrane reactor system from Alcoa Separation T...
After the biomass pretreatment and fermentation processes, the purification step constitutes a major...
Dehydration of 1-butanol over the catalytic membrane was carried out in a tubular membrane reactor. ...
The dehydrogenation of isobutane on a commercial chromia-alumina catalyst was studied using a conven...
The use of membrane reactors in industrial processes leads to high efficiencies because the reaction...
A rigorous two-dimensional mathematical model is used to simulate a bench-scale membrane reactor for...
© 2018, The Author(s). A catalytic membrane reactor with a Au–Pd catalyst, impregnated at the inner ...
In a high-temperature membrane reactor, one of the reaction products is selectively removed from the...
Conventional fossil fuels such as gasoline or diesel should be substituted in the future by environm...
The partial oxidation of butane to maleic anhydride in a membrane reactor with improved heat transfe...
The potential of using various types and configurations of membranes in reactors attracts already a ...
Hybrid ethanol dehydration systems are modeled and optimized using MINLP. The systems consist of a d...
Coupling the dehydrogenation of ethylbenzene to styrene with the hydrogenation of nitrobenzene to an...
The ethanol steam reforming reaction has been considered for producing pure hydrogen to be used for ...
The objective of this research study is to demonstrate the effectiveness of a catalytic membrane rea...