Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic plate combustion and reforming microreactors is simulated for methane and methanol reforming as representatives of a high and a low temperature process, respectively. Both reforming processes are feasible at microscales with high conversions over a wide combustible and reforming stream inlet velocity range, and can be tuned to provide variable power output. Interestingly, in low temperature reforming, the fraction of heat release that is wasted, as "excess enthalpy" in the products, is not significantly lower than in high temperature reforming at the breakthrough limit. Along the breakthrough line, more than 30% higher power efficiency to hydrog...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
A pseudo-2-dimensional model is used for modeling a multifunctional microreactor for hydrogen genera...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
Hydrogen is a zero-carbon energy carrier for the deployment of fuel cell technologies in distributed...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
Fuel cells are promoted by the US government as a viable alternative for clean and efficient energy ...
The steam reforming of methane in a parallel plate microreactor, consisting of alternating channels ...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
InnovaTek is combining microreactor technology with advanced catalysts and separations technology to...
Low temperature methane steam reforming to produce H2 for fuel cells has been calculated thermodynam...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
A pseudo-2-dimensional model is used for modeling a multifunctional microreactor for hydrogen genera...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
Hydrogen is a zero-carbon energy carrier for the deployment of fuel cell technologies in distributed...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
The potential of methane steam reforming at microscale is theoretically explored. To this end, a mul...
Fuel cells are promoted by the US government as a viable alternative for clean and efficient energy ...
The steam reforming of methane in a parallel plate microreactor, consisting of alternating channels ...
This paper addresses the issues related to the rapid production of hydrogen from methane steam refor...
This paper studies the methanol steam reforming intensification to enhance the hydrogen production i...
InnovaTek is combining microreactor technology with advanced catalysts and separations technology to...
Low temperature methane steam reforming to produce H2 for fuel cells has been calculated thermodynam...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
A pseudo-2-dimensional model is used for modeling a multifunctional microreactor for hydrogen genera...
This paper presents a numerical and experimental study on the performance of a methanol steam reform...