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Heat and fuel coupled operation of a high temperature polymer electrolyte fuel cell with a heat exchanger methanol steam reformer

机译:高温聚合物电解质燃料电池用热交换器甲醇蒸汽重整器的热量和燃料耦合操作

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摘要

In this work a methanol steam reforming (MSR) reactor has been operated thermally coupled to a high temperature polymer electrolyte fuel cell stack (HT-PEMFC) utilizing its waste heat. The operating temperature of the coupled system was 180 C which is significantly lower than the conventional operating temperature of the MSR process which is around 250 C. A newly designed heat exchangerudreformer has been developed by VTT (Technical Research Center of Finland LTD) and was equipped with commercially available CuO/ZnO/Al2O3 (BASF RP-60) catalyst. The liquid cooled, 165 cm2, 12-cell stack used for the measurements was supplied by Serenergy A/S. The off-heat from the electrochemical fuel cell reaction was transferred to the reforming reactor using triethylene glycol (TEG) as heat transfer fluid. The system was operated up to 0.4 A cm2 generating an electrical power output of 427Wel. A total stack waste heat utilization of 86.4% was achieved. It has been shown that it is possible to transfer sufficient heat from the fuel cell stack to the liquid circuit in order to provide the needed amount for vaporizing and reforming of the methanol-water-mixture. Furthermore a set of recommendations is given for future system design considerations.
机译:在这项工作中甲醇蒸汽重整(MSR)反应器已被操作热耦合到高温聚合物电解质燃料电池堆利用其废热(HT-PEMFC)。耦合系统的操作温度为180℃,其比所述MSR方法的常规操作温度是绕显著降低250℃A udreformer已由VTT(芬兰LTD技术研究中心)开发的新设计的热交换器及配备有可商购的CuO / ZnO / Al2O3复合(BASF RP-60)催化剂。液体冷却,165平方厘米,12-细胞用于测量堆被Serenergy A / S提供。从电化学燃料电池反应的离热转移到使用三甘醇(TEG)作为热传递流体的重整反应器。该系统被操作到0.4 A厘米2产生427Wel的电功率输出。达到86.4%的总堆叠废热利用。已经表明,有可能从燃料电池堆,以提供所需的量用于蒸发和甲醇 - 水 - 混合物的重整传递足够的热量以在液体回路。另外一组的建议,给出了未来的系统设计考虑。

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