首页> 外文会议>IASTED International Conference on Power and Energy Systems >FROM ETHANOL TO ELECTRICITY THROUGH INTEGRATED STEAM REFORMER AND SOLID OXIDE FUEL CELL SYSTEM
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FROM ETHANOL TO ELECTRICITY THROUGH INTEGRATED STEAM REFORMER AND SOLID OXIDE FUEL CELL SYSTEM

机译:通过集成蒸汽重整器和固体氧化物燃料电池系统从乙醇到电力

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Ethanol is considered as a green fuel and made from a variety of agricultural products by ethanol fermentation process. Because there are many agricultural products in Thailand, this study focuses on electricity generation in solid oxide fuel cell (SOFC) by integrated ethanol steam reformer. In this study, the integrated process of steam reforming and SOFC was thermodynamically studied. The optimum process structure of the system has been investigated by heat integration techniques. At the conceptual design, pinch analysis of the heat exchanger network is used. The model consists of a steam reformer and a water gas shift for a fuel processing feeding SOFC. SOFC is considered to operate at high temperature 1200 K which is an advantage of SOFC system because of the waste heat from SOFC being used to force fuel processing. A result showed that the usable heat from SOFC system was enough to supply the integrated steam reforming and SOFC system.
机译:乙醇被认为是一种绿色燃料,由乙醇发酵过程由各种农产品制成。由于泰国有许多农产品,本研究专注于通过整合乙醇蒸汽重整器在固体氧化物燃料电池(SOFC)中发电。在这项研究中,热力学研究了蒸汽重整和SOFC的综合过程。通过热集成技术研究了系统的最佳过程结构。在概念设计中,使用了热交换器网络的捏合分析。该模型包括蒸汽重整器和燃料加工SOFC的水气体转换。 SOFC被认为在高温1200k下操作,这是SOFC系统的优点,因为SOFC的废热用于迫使燃料加工。结果表明,来自SOFC系统的可用热足以提供集成的蒸汽重塑和SOFC系统。

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