4.8 Article Proceedings Paper

Conceptual design and selection of a biodiesel fuel processor for a vehicle fuel cell auxiliary power unit

期刊

JOURNAL OF POWER SOURCES
卷 145, 期 2, 页码 683-690

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ELSEVIER
DOI: 10.1016/j.jpowsour.2004.12.076

关键词

biodiesel; fuel processor; fuel cell; auxiliary power unit; conceptual design

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Within the European project BIOFEAT (biodiesel fuel processor for a fuel cell auxiliary power unit for a vehicle), a complete modular 10 kW(e) biodiesel fuel processor capable of feeding a PEMFC will be developed, built and tested to generate electricity for a vehicle auxiliary power unit (APU). Tail pipe emissions reduction, increased use of renewable fuels, increase of hydrogen-fuel economy and efficient supply of present and future APU for road vehicles are the main project goals. Biodiesel is the chosen feedstock because it is a completely natural and thus renewable fuel. Three fuel processing options were taken into account at a conceptual design level and compared for hydrogen production: (i) autothermal reformer (ATR) with high and low temperature shift (HTS/LTS) reactors; (ii) autothermal reformer (ATR) with a single medium temperature shift (MTS) reactor; (iii) thermal cracker (TC) with high and low temperature shift (HTS/LTS) reactors. Based on a number of simulations (with the AspenPlus (R) software), the best operating conditions were determined (steam-to-carbon and O-2/C ratios, operating temperatures and pressures) for each process alternative. The selection of the preferential fuel processing option was consequently carried out, based on a number of criteria (efficiency, complexity, compactness, safety, controllability, emissions, etc.); the ATR with both HTS and LTS reactors shows the most promising results, with a net electrical efficiency of 29% (LHV). (c) 2005 Elsevier B.V. All rights reserved.

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