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Self-humidified proton exchange membrane fuel cells: Operation of larger cells and fuel cell stacks

Technical Report ·
DOI:https://doi.org/10.2172/460298· OSTI ID:460298
; ;  [1]
  1. BCS Technology, Inc., Bryan, TX (United States)

The PEM fuel cell is promising as the power source for use in mobile and stationary applications primarily because of its high power density, all solid components, and simplicity of operation. For wide acceptability of this power source, its cost has to be competitive with the presently available energy sources. The fuel cell requires continuous humidification during operation as a power source. The humidification unit however, increases fuel cell volume, weight, and therefore decreases its overall power density. Great advantages in terms of further fuel cell simplification can be achieved if the humidification process can be eliminated or minimized. In addition, cost reductions are associated with the case of manufacturing and operation. At BCS Technology we have developed a technology of self-humidified operation of PEM fuel cells based on the mass balance of the reactants and products and the ability of membrane electrode assembly (MEA) to retain water necessary for humidification under the cell operating conditions. The reactants enter the fuel cell chambers without carrying any form of water, whether in liquid or vapor form. Basic principles of self-humidified operation of fuel cells as practiced by BCS Technology, Inc. have been presented previously in literature. Here, we report the operation of larger self-humidified single cells and fuel cell stacks. Fuel cells of areas Up to 100 cm{sup 2} have been operated. We also show the self-humidified operation of fuel cell stacks of 50 and 100 cm{sup 2} electrode areas.

Research Organization:
Fuel Cell Seminar Organizing Committee (United States)
OSTI ID:
460298
Report Number(s):
CONF-961107--Absts.; ON: TI97001494; CNN: Grant DMI-9460292
Country of Publication:
United States
Language:
English

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