In an effort to investigate the suitability of the concept of portable hydrogen production, we examine numerically the combustion of a very rich methanol-air mixture in a micro-gap assembly consisting of multiple counter-current channels of finite length separated by thin solid conducting walls. Within the mathematical framework of the narrow-channel approximation, the problem can be formulated as a one-dimensional model for a single channel with an extra term representing heat transfer from the hot stream products to the fresh reactants in adjacent channels. We show that the heat recirculation enables superadiabatic temperatures inside the reactor and promotes the oxidation of methanol far beyond the conventional rich limit of flammability...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Chemically reacting flow occurs in many industrial settings such as combustion, catalysis, chemical ...
Results concerning the coupling of the steam reforming (SR) and total oxidation (TOX) of methanol in...
In an effort to investigate the suitability of the concept of portable hydrogen production, we exami...
The present study is directed to the model development for a parallel reaction system, especially a ...
A pseudo-2-dimensional model is used for modeling a multifunctional microreactor for hydrogen genera...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
The steam reforming of ethanol is carried out in a microreactor for hydrogen production. The heat fo...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
This paper presents both experimental and modeling investigations of a catalytic wall fuel processor...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
In this study, the modeling of hydrogen production process in microreactors by methanol-steam reform...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Chemically reacting flow occurs in many industrial settings such as combustion, catalysis, chemical ...
Results concerning the coupling of the steam reforming (SR) and total oxidation (TOX) of methanol in...
In an effort to investigate the suitability of the concept of portable hydrogen production, we exami...
The present study is directed to the model development for a parallel reaction system, especially a ...
A pseudo-2-dimensional model is used for modeling a multifunctional microreactor for hydrogen genera...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
The steam reforming of ethanol is carried out in a microreactor for hydrogen production. The heat fo...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
This paper presents both experimental and modeling investigations of a catalytic wall fuel processor...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
In this study, the modeling of hydrogen production process in microreactors by methanol-steam reform...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Chemically reacting flow occurs in many industrial settings such as combustion, catalysis, chemical ...
Results concerning the coupling of the steam reforming (SR) and total oxidation (TOX) of methanol in...