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Thermal integration of a cylindrically symmetric methanol fuel processor for portable fuel cell power

✍ Scribed by R.S. Besser


Publisher
Elsevier Science
Year
2011
Tongue
English
Weight
775 KB
Volume
36
Category
Article
ISSN
0360-3199

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✦ Synopsis


The realization of a proven approach combining small hydrogen fuel cells with reformed methanol has continued to be elusive. This is so because of the overwhelming challenge of thermally integrating a chemical process involving many steps, each at a unique temperature, within a confined volume. In addition, heat loss to the environment becomes correspondingly higher as overall size shrinks due to increasing surface-to-volume ratio, requiring an inordinate use of system volume on thermal insulation. To address these challenges, we present a study based on extrapolation of experiment which incorporates novel cylindrical symmetry of the methanol fuel processor based on microchemical system technology. Models for two different fuel processor-proton exchange fuel cell systems of 4-W and 20-W scale are presented. ASPEN process simulation was used to establish basic system operating parameters. Finite difference modeling of the axisymmetric configuration was used to establish the heat flows in the systems. The results indicate strong potential for the cylindrical arrangement to provide viable self-contained small form factor battery replacements.


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Developments for Improved Direct Methano
✍ C. Cremers; M. Scholz; W. Seliger; A. Racz; W. Knechtel; J. Rittmayr; F. Grafwal πŸ“‚ Article πŸ“… 2007 πŸ› John Wiley and Sons 🌐 English βš– 856 KB

## Abstract Different aspects of the improvement of direct methanol fuel cell (DMFC) systems for portable power generation are investigated, in a project funded by the Bavarian state. The materials research focuses on the development of improved catalysts, in particular for the oxygen reduction re