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Micro-Fabricated Thin-Film Fuel Cells for Portable Power Requirements

机译:满足便携式电源要求的超细薄膜燃料电池

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摘要

Fuel cells have gained renewed interest for applications in portable power since the energy is stored as a reservoir of fuel rather than as an integral part of the power source, as is the case with batteries. While miniaturized fuel cells have been demonstrated for the low power regime (1-20 Watts), numerous issues still must be resolved prior to deployment for applications as a replacement for batteries. As traditional fuel cell designs are scaled down in both power output and physical footprint, several issues impact the operation, efficiency, and overall performance of the fuel cell system. These issues include fuel storage, fuel delivery, system startup, peak power requirements, cell stacking, and thermal management. The combination of thin-film deposition and micro-machining materials offers potential advantages with respect to stack size and weight, flow field and manifold structures, fuel storage, and thermal management. The micro-fabrication technologies that enable material and fuel flexibility through a modular fuel cell platform will be described along with experimental results from both solid oxide and proton exchange membrane, thin-film fuel cells.
机译:燃料电池在便携式电源中的应用引起了新的兴趣,因为能量存储为燃料的储存器,而不是像电池那样作为电源的组成部分。虽然已经证明了小型燃料电池可用于低功率状态(1-20瓦),但在部署作为电池替代品的应用之前,仍然必须解决许多问题。随着传统燃料电池设计在功率输出和物理尺寸上都按比例缩小,一些问题影响了燃料电池系统的运行,效率和整体性能。这些问题包括燃料存储,燃料输送,系统启动,峰值功率要求,电池堆和热管理。薄膜沉积和微加工材料的组合在堆叠尺寸和重量,流场和歧管结构,燃料存储以及热管理方面提供了潜在的优势。将描述通过模块化燃料电池平台实现材料和燃料灵活性的微细加工技术,以及来自固体氧化物和质子交换膜,薄膜燃料电池的实验结果。

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