A study of the reforming rates, heat transfer and flow through a methanol reforming catalytic microreactor fabricated on a silicon wafer are presented. Packed bed microchannel reactors were fabricated using silicon DRIE, followed by wafer bonding. The reactor bed was subsequently filled with catalyst particles. Thermal control is achieved through on-chip resistive heaters, whereby methanol steam reforming reactions were studied over a temperature range from 180-300 degrees C. Three simulations of varying complexity, including three-dimensional (3-D), quasi-3-D, and I-D models, were developed. Comparison of the models with experimental results shows good agreement over a range of operating conditions. We found that Amphlett's kinetics f...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A novel design of a silicon-based micro-reformer for onboard hydrogen generation from ethanol is pre...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A study of the reforming rates, heat transfer and flow through a methanol reforming catalytic micror...
Silicon fabrication technologies such as a photolithography, a wet chemical etching and an anodic bo...
A Computational Fluid Dynamics (CFD) study has been conducted to assess the performance of packed be...
This paper presents the design, fabrication and evaluation of a micro methanol reformer complete wit...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
In this study, the modeling of hydrogen production process in microreactors by methanol-steam reform...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
The present study is directed to the model development for a parallel reaction system, especially a ...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
The most important industrial method for the production of hydrogen is the catalytic steam reforming...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A novel design of a silicon-based micro-reformer for onboard hydrogen generation from ethanol is pre...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A study of the reforming rates, heat transfer and flow through a methanol reforming catalytic micror...
Silicon fabrication technologies such as a photolithography, a wet chemical etching and an anodic bo...
A Computational Fluid Dynamics (CFD) study has been conducted to assess the performance of packed be...
This paper presents the design, fabrication and evaluation of a micro methanol reformer complete wit...
Thermally integrated microchannel reforming reactors have attracted considerable interest for a wide...
In this study, the modeling of hydrogen production process in microreactors by methanol-steam reform...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
The present study is directed to the model development for a parallel reaction system, especially a ...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
The most important industrial method for the production of hydrogen is the catalytic steam reforming...
Direct oxidation of fuels such as methanol in proton-exchange membrane fuel cells at practical curre...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
A novel design of a silicon-based micro-reformer for onboard hydrogen generation from ethanol is pre...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...