Abstract(#br)To improve the hydrogen production performance of microreactors, the selective laser melting method was proposed to fabricate the porous metals as catalyst supports with different pore structures, porosities, and materials. The influence of the porous structures on the molecule distribution after passing through the porous metals was analyzed by molecular dynamics simulation. The developed porous metals were then used as catalyst supports in a methanol steam reforming microreactor for hydrogen production. Our results show that the porosity of the porous metal had significantly influence on the catalyst infiltration and the reaction process of hydrogen production. A lower degree of catalyst infiltration of the porous metal was o...
Hydrogen is an attractive source for zero-emission energy because of its usefulness in fuel cell bat...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
In this study, the cascading metal foams were used as catalyst supports for constructing a new type ...
The search for clean alternative energy sources is vital to feed the ever-increasing world energy co...
Abstract(#br)The porous copper fiber sintered felts with gradient porosity structure (gradient PCFSF...
To replace the traditional electric heating mode and increase methanol steam reforming reaction perf...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
The present contribution reports the design, manufacture and experimental proof of concept of an eth...
2011-2012 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Novel micro-structured string-reactor designed as catalytically active wires placed in parallel into...
Internal combustion engines substantially lose fuel energy in the form of heat without contributing ...
Ethanol steam reforming (S/C = 3) was effectively performed at low temperature over catalytic wall r...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
Hydrogen is an attractive source for zero-emission energy because of its usefulness in fuel cell bat...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...
In this study, the cascading metal foams were used as catalyst supports for constructing a new type ...
The search for clean alternative energy sources is vital to feed the ever-increasing world energy co...
Abstract(#br)The porous copper fiber sintered felts with gradient porosity structure (gradient PCFSF...
To replace the traditional electric heating mode and increase methanol steam reforming reaction perf...
Many attempts have been made to improve heat transfer for thermally integrated microchannel reformin...
Hydrogen production from a multifunctional microdevice consisting of thermally coupled catalytic pla...
The present contribution reports the design, manufacture and experimental proof of concept of an eth...
2011-2012 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Novel micro-structured string-reactor designed as catalytically active wires placed in parallel into...
Internal combustion engines substantially lose fuel energy in the form of heat without contributing ...
Ethanol steam reforming (S/C = 3) was effectively performed at low temperature over catalytic wall r...
A steady state multiphysics model of a microchannel methanol reformer for hydrogen production was de...
Hydrogen is an attractive source for zero-emission energy because of its usefulness in fuel cell bat...
A detailed study of the experimental issues involved in the design and operation of a methanol steam...
This paper proposes a novel design concept to enhance the methanol conversion rate in a single chann...