This paper proposes a novel design concept to enhance the methanol conversion rate in a single channel plate type microreformer with cavities. Detailed numerical studies have been carried out to understand the steam reforming of methanol for hydrogen production. The effects of operating parameters such as steam-to-methanol molar ratio, reforming temperature, reformer gas hourly space velocity (GHSV), channel wall conductivity, wall thickness and catalyst layer thickness on reforming characteristics are investigated. The effect of cavities on microreformer performance is discussed in terms of cavity aspect ratio and its spacing. For a reforming temperature of 250 degrees C, steam methanol molar ratio of 1.1, average inlet fluid temperature o...
This paper proposes the development of a new and innovative configuration based on single channel wi...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
The most important industrial method for the production of hydrogen is the catalytic steam reforming...
A methanol reformer is a device that produces hydrogen gas from methanol and water mixture. This pro...
A methanol reformer is a device that produces hydrogen gas from methanol and water mixture. This pro...
Small-scale reformers for hydrogen production through steam reforming of methanol can provide an alt...
This paper proposes the development of a new and innovative configuration based on single channel wi...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
The most important industrial method for the production of hydrogen is the catalytic steam reforming...
A methanol reformer is a device that produces hydrogen gas from methanol and water mixture. This pro...
A methanol reformer is a device that produces hydrogen gas from methanol and water mixture. This pro...
Small-scale reformers for hydrogen production through steam reforming of methanol can provide an alt...
This paper proposes the development of a new and innovative configuration based on single channel wi...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...