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一种具有高功率密度的热自维持微型固体氧化物燃料电池堆。

A thermally self-sustained micro solid-oxide fuel-cell stack with high power density.

作者信息

Shao Zongping, Haile Sossina M, Ahn Jeongmin, Ronney Paul D, Zhan Zhongliang, Barnett Scott A

机构信息

Materials Science, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Nature. 2005 Jun 9;435(7043):795-8. doi: 10.1038/nature03673.

Abstract

High energy efficiency and energy density, together with rapid refuelling capability, render fuel cells highly attractive for portable power generation. Accordingly, polymer-electrolyte direct-methanol fuel cells are of increasing interest as possible alternatives to Li ion batteries. However, such fuel cells face several design challenges and cannot operate with hydrocarbon fuels of higher energy density. Solid-oxide fuel cells (SOFCs) enable direct use of higher hydrocarbons, but have not been seriously considered for portable applications because of thermal management difficulties at small scales, slow start-up and poor thermal cyclability. Here we demonstrate a thermally self-sustaining micro-SOFC stack with high power output and rapid start-up by using single chamber operation on propane fuel. The catalytic oxidation reactions supply sufficient thermal energy to maintain the fuel cells at 500-600 degrees C. A power output of approximately 350 mW (at 1.0 V) was obtained from a device with a total cathode area of only 1.42 cm2.

摘要

高能量效率和能量密度,再加上快速的燃料补充能力,使得燃料电池在便携式发电方面极具吸引力。因此,聚合物电解质直接甲醇燃料电池作为锂离子电池的可能替代品越来越受到关注。然而,这种燃料电池面临着几个设计挑战,并且不能使用能量密度更高的碳氢燃料运行。固体氧化物燃料电池(SOFC)能够直接使用高级碳氢化合物,但由于小规模热管理困难、启动缓慢和热循环性差,尚未被认真考虑用于便携式应用。在这里,我们展示了一种热自维持的微型SOFC堆栈,通过在丙烷燃料上采用单室操作,具有高功率输出和快速启动能力。催化氧化反应提供足够的热能,以将燃料电池维持在500-600摄氏度。从一个总阴极面积仅为1.42平方厘米的装置中获得了约350毫瓦(在1.0伏时)的功率输出。

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