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Pressurized Gasoline-Fueled Polymer Electrolyte Fuel Cell Systems: Effect Of Operating Pressure

机译:加压汽油燃料聚合物电解质燃料电池系统:操作压力的影响

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In a pressurized gasoline-fueled polymer electrolyte fuel cell (PEFC) system, a compressor is needed to pressurize the air for the fuel cell cathode and the autothermal fuel processor. An expander may also be used to recover some of the mechanical and chemical energy in the spent anode and cathode streams. The existing and projected performance data for different air management devices were evaluated for pressure ratio, compressor and expander efficiencies, and the net shaft power. In-depth analyses were carried out to quantify the effects of operating pressure on the efficiency of the gasoline fuel processor, stack performance, and the overall system efficiency at the rated power point. For one selected compressor/expander module, complete sets of performance curves were used to determine system efficiency at part load as a function of the full load pressure ratio. Detailed component models were used to investigate the effects of the operating pressure on the sizes of the fuel processor (autothermal reactor, high- and low-temperature water-gas shift reactors), CO removal device, PEFC stack, and the heat rejection and water recovery subsystems. It was determined that an operating pressure of 2-3.2 atm can meet the system efficiency targets set for 100% and 25% of rated power.
机译:在加压汽油为燃料的聚合物电解质燃料电池(PEFC)系统中,需要一个压缩机来加压空气用于燃料电池阴极和自热燃料处理器。膨胀机也可以用于回收一些机械和化学能的在废阳极和阴极流。对于不同的空气管理的设备的现有的和预测的性能数据的压力比,压缩机和膨胀机的效率,净轴功率进行评价。深入分析进行了量化在额定功率点上汽油燃料处理器,堆的性能,和整个系统的效率的效率操作压力的影响。对于一个所选择的压缩器/扩展器模块中,使用性能曲线的成套在部分负荷来确定系统的效率,因为满负载压力比的函数。详细的组件模型用于研究的工作压力的所述燃料处理器的尺寸的影响(自热反应器,高和低温水煤气变换反应器),CO去除装置,PEFC电池堆,和排热和水回收子系统。经测定,2-3.2大气压的操作压力可满足100%的额定功率的25%设置系统效率的目标。

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