A Compact, Self-Sustaining Fuel Cell Auxiliary Power Unit Operated on Diesel Fuel
A complete fuel cell-based auxiliary power unit in the 7.5 kW(e) power class utilizing diesel fuel was developed in accordance with the power density and start-up targets defined by the U.S. Department of Energy. The system includes a highly-integrated fuel processor with multifunctional reactors to...
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Veröffentlicht in: | Energies (Basel) 2021-09, Vol.14 (18), p.5909, Article 5909 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A complete fuel cell-based auxiliary power unit in the 7.5 kW(e) power class utilizing diesel fuel was developed in accordance with the power density and start-up targets defined by the U.S. Department of Energy. The system includes a highly-integrated fuel processor with multifunctional reactors to facilitate autothermal reforming, the water-gas shift reaction, and catalytic combustion. It was designed with the help of process analyses, on the basis of which two commercial, high-temperature PEFC stacks and balance of plant components were selected. The complete system was packaged, which resulted in a volume of 187.5 l. After achieving a stable and reproducible stack performance based on a modified break-in procedure, a maximum power of 3.3 kW(e) was demonstrated in a single stack. Despite the strong deviation from design points resulting from a malfunctioning stack, all system functions could be validated. By scaling-up the performance of the functioning stack to the level of two stacks, a power density of 35 W-e l(-1) could be estimated, which is close to the 40 W-e l(-1) target. Furthermore, the start-up time could be reduced to less than 22 min, which exceeds the 30 min target. These results may bring diesel-based fuel cell auxiliary power units a step closer to use in real applications, which is supported by the demonstrated indicators. |
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ISSN: | 1996-1073 1996-1073 |
DOI: | 10.3390/en14185909 |