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Water neutrality and waste heat management in ethanol reformer - HTPEMFC integrated system for on-board hydrogen generation

机译:乙醇重整器中的水中和和废热管理-HTPEMFC车载氢气合成系统

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On-board power generation for vehicular applications requires a compact, simplified and well-integrated fuel processor-fuel cell system. In the present paper, the integration of an ethanol reformer unit with a 50 kWe high temperature polymer electrolyte membrane (PEM) fuel cell is studied for potential automotive applications. A high-efficiency dual reformer system is used for on-board production of hydrogen from ethanol. Heat transfer equipment for recovery of water and effective utilization of waste heat has been incorporated into the integrated system. Detailed analysis using ASPEN simulations shows that gross system efficiencies of up to 39% can be achieved. Estimates of size, weight of the integrated system have been made to assess its suitability for application as auxiliary power units in automotive systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:用于车辆应用的车载发电需要紧凑,简化和高度集成的燃料处理器-燃料电池系统。在本文中,针对潜在的汽车应用,研究了乙醇重整器单元与50 kWe高温聚合物电解质膜(PEM)燃料电池的集成。高效的双重重整系统用于从乙醇机载制氢。用于回收水和有效利用废热的传热设备已集成到集成系统中。使用ASPEN仿真进行的详细分析表明,可以实现高达39%的总系统效率。已对集成系统的尺寸,重量进行了估算,以评估其是否适合用作汽车系统中的辅助动力装置。 (C)2017 Elsevier Ltd.保留所有权利。

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