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Shortcut model for water-balanced operation in fuel processor fuel cell systems

机译:燃料处理器燃料电池系统中水平衡运行的捷径模型

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In a fuel processor, a hydrocarbon or oxygenate fuel is catalytically converted into a mixture rich in hydrogen which can be fed to a fuel cell to generate electricity. In these fuel processor fuel cell systems (FPFCs), water is recovered from the exhaust gases and recycled back into the system. We present a simple mass balance analysis based on the assumption that the off-gas leaving the system is just saturated (perfect condenser). The model results in simple expressions for the net amount of water produced, and the critical condition for water-balanced operation in FPFCs. The analysis includes the composition of the hydrocarbon or oxygenate fuel, the air-to-fuel inlet ratio, humidity, ambient temperature and pressure, and the temperature and pressure in the condenser. The analysis can be used to quickly assess under what conditions operation is critical and additional measures or alternative water recovery technologies are required. The simple analysis is in agreement with the more extensive mass balance analysis by Ahmed et al. [Water balance in a polymer electrolyte fuel cell system, J. Power Sources 112 (2002) 519-530] and shows the same dependencies of the water balance on the H/C ratio, condenser pressure, ambient temperature, etc. The analysis shows that as long as these parameters remain invariant, the actual amount of water that is used in the system is of no importance from an overall water management perspective. For instance, high steam loads in the reformer, or in the fuel cell (e.g., in case of a polyelectrolyte membrane fuel cell) do not burden the overall water balance in the least.
机译:在燃料处理器中,碳氢化合物或含氧燃料被催化转化为富含氢的混合物,该氢可被馈送到燃料电池以发电。在这些燃料处理器燃料电池系统(FPFC)中,水从废气中回收并循环回系统中。我们基于一个简单的质量平衡分析,即假设离开系统的废气只是饱和的(完美的冷凝器)。该模型用简单的表达式来表示净水产量以及FPFC中水平衡运行的临界条件。分析包括碳氢化合物或含氧燃料的成分,空燃比,湿度,环境温度和压力以及冷凝器中的温度和压力。该分析可用于快速评估在什么条件下操作至关重要,并且需要其他措施或替代性的水回收技术。简单的分析与Ahmed等人的更广泛的质量平衡分析是一致的。 [聚合物电解质燃料电池系统中的水平衡,J.Power Sources 112(2002)519-530],并且显示了水平衡对H / C比,冷凝器压力,环境温度等的相同依赖性。只要这些参数保持不变,从整体水资源管理的角度来看,系统中实际使用的水量就不重要了。例如,重整器或燃料电池(例如,在聚电解质膜燃料电池的情况下)中的高蒸汽负荷不会使总的水平衡负担最小。

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