Title of article :
Compact hydrogen production systems for solid polymer fuel cells
Author/Authors :
K. Ledjeff-Hey، نويسنده , , V. Formanski، نويسنده , , Th. Kalk، نويسنده , , J. Roes، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
9
From page :
199
To page :
207
Abstract :
Generally there are several ways to produce hydrogen gas from carbonaceous fuels like natural gas, oil or alcohols. Most of these processes are designed for large-scale industrial production and are not suitable for a compact hydrogen production system (CHYPS) in the power range of 1 kW. In order to supply solid polymer fuel cells (SPFC) with hydrogen, a compact fuel processor is required for mobile applications. The produced hydrogen-rich gas has to have a low level of harmful impurities; in particular the carbon monoxide content has to be lower than 20 ppmv. Integrating the reaction step, the gas purification and the heat supply leads to small-scale hydrogen production systems. The steam reforming of methanol is feasible at copper catalysts in a low temperature range of 200–350°C. The combination of a small-scale methanol reformer and a metal membrane as purification step forms a compact system producing high-purity hydrogen. The generation of a SPFC hydrogen fuel gas can also be performed by thermal or catalytic cracking of liquid hydrocarbons such as propane. At a temperature of 900°C the decomposition of propane into carbon and hydrogen takes place. A fuel processor based on this simple concept produces a gas stream with a hydrogen content of more than 90 vol.% and without CO and CO2.
Keywords :
Hydrogen production , Solid polymer fuel cells , Methanol reforming , Catalytic cracking of propane , Thermal cracking of propane , Metal membrane separation
Journal title :
Journal of Power Sources
Serial Year :
1998
Journal title :
Journal of Power Sources
Record number :
439436
Link To Document :
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