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Performance improvement of self-humidifying PEM fuel cells using water injection at various start-up conditions

机译:在不同的启动条件下通过注水提高自增湿PEM燃料电池的性能

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A critical issue in self-humidifying proton electrolyte membrane (PEM) fuel cells is to achieve stable performance during start-up. In this study, the start-up characteristics of self-humidifying PEM fuel cells are investigated at various temperatures and voltages. Aquivion and Nafion are used as electrolytes for the performance comparison. Moreover, to overcome start-up failure, the direct water injection strategy is proposed and tested in the self-humidifying PEM fuel cell according to the injection side and amount of injected water. Generally, Aquivion membranes exhibit better start-up performance than Nafion membranes in the self-humidifying PEM fuel cell owing to its higher water absorption capability. The water injection into the anode side is more effective than that into the cathode side in achieving high stability and steady-state current density in the self-humidifying PEM fuel cells. With the water injection during start-up, the steady-state current density of the self-humidifying PEM fuel cell with Aquivion is 32% on average higher than that with Nafion. In addition, the optimal amount of water injection is dependent on the water absorption capability of the membrane at the start-up conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:自增湿质子电解质膜(PEM)燃料电池的关键问题是在启动过程中要获得稳定的性能。在这项研究中,研究了自增湿PEM燃料电池在各种温度和电压下的启动特性。 Aquivion和Nafion用作电解质进行性能比较。此外,为了克服启动失败,提出了直接注水策略,并根据注入侧和注入水量在自加湿PEM燃料电池中进行了测试。通常,由于其较高的吸水能力,Aquivion膜在自增湿PEM燃料电池中比Nafion膜具有更好的启动性能。在自增湿PEM燃料电池中实现高稳定性和稳态电流密度方面,注入阳极侧的水比注入阴极侧的水更有效。通过启动过程中的注水,采用Aquivion的自增湿PEM燃料电池的稳态电流密度平均比采用Nafion的高32%。另外,注水的最佳量取决于在启动条件下膜的吸水能力。 (C)2019 Elsevier Ltd.保留所有权利。

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