A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was developed and validated to study the effects of catalyst layer structural parameters and heat supply strategies on the reformer performance. The hydrogen generated by the studied reformer was designated for use in high-temperature proton exchange membrane (HT-PEM) fuel cells. The dimensions of the reformer and inlet flow rate of methanol were selected to produce enough hydrogen to feed fuel cells in the 100 to 500 W range. The study considered a 2-dimensional domain for the thin coating of the reforming-catalyst to account for the internal diffusion limitations and the coating layer structural parameters. The multicomponent Maxwell–Stefan diffu...
Internal combustion engines substantially lose fuel energy in the form of heat without contributing ...
A tubular-quartz reactor (TQR) and a multichannel reactor (MCR) made of aluminium were employed for ...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
Three reformers with different designs (multi-channel, radial and tubular) were developed for therma...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
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...
The heat transfer effects on a methanol-steam reforming (MSR) process are numerically investigated u...
A Computational Fluid Dynamics (CFD) study has been conducted to assess the performance of packed be...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
The present study is directed to the model development for a parallel reaction system, especially a ...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Small-scale reformers for hydrogen production through steam reforming of methanol can provide an alt...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Internal combustion engines substantially lose fuel energy in the form of heat without contributing ...
A tubular-quartz reactor (TQR) and a multichannel reactor (MCR) made of aluminium were employed for ...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
Three reformers with different designs (multi-channel, radial and tubular) were developed for therma...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
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...
The heat transfer effects on a methanol-steam reforming (MSR) process are numerically investigated u...
A Computational Fluid Dynamics (CFD) study has been conducted to assess the performance of packed be...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
The present study is directed to the model development for a parallel reaction system, especially a ...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Small-scale reformers for hydrogen production through steam reforming of methanol can provide an alt...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Internal combustion engines substantially lose fuel energy in the form of heat without contributing ...
A tubular-quartz reactor (TQR) and a multichannel reactor (MCR) made of aluminium were employed for ...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...