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Analysis of the system efficiency of an intermediate temperature proton exchange membrane fuel cell at elevated temperature and relative humidity conditions

机译:中温质子交换膜燃料电池在高温和相对湿度条件下的系统效率分析

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Humidification of the membrane is very important in a proton exchange membrane fuel cell (PEMFC), to maintain high ionic conductivity. At an elevated temperature, a large amount of thermal energy is required for humidification because of the exponentially increased saturation vapor pressure. In this study, the system efficiency of a PEMFC was evaluated by considering the heat required for preheating/humidification and compression work. Three-dimensional steady-state simulations were conducted using Fluent 14 to simulate the electrochemical reactions. The operating conditions were optimized using response surface methodology by considering both the fuel cell output and system efficiency. In addition, the effects of operating parameters such as the temperature, relative humidity, and stoichiometric ratio were investigated. The system efficiency can be improved more effectively by increasing relative humidity rather than increasing operating temperature because the ionic conductivity of the membrane was strongly influenced by the relative humidity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在质子交换膜燃料电池(PEMFC)中,膜的加湿对于保持高离子电导率非常重要。在高温下,由于饱和蒸气压呈指数增加,因此需要大量的热能进行加湿。在这项研究中,通过考虑预热/加湿和压缩工作所需的热量来评估PEMFC的系统效率。使用Fluent 14进行了三维稳态仿真,以模拟电化学反应。通过考虑燃料电池的输出和系统效率,使用响应面方法对运行条件进行了优化。此外,还研究了温度,相对湿度和化学计量比等操作参数的影响。通过增加相对湿度而不是增加操作温度可以更有效地提高系统效率,因为膜的离子电导率受到相对湿度的强烈影响。 (C)2016 Elsevier Ltd.保留所有权利。

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