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Novel Dead-Ended Anode Design For Self-Regulating Humidification In An Air- Breathing H_2-PEM Fuel Cell

机译:用于空气呼吸H_2-PEM燃料电池中的自我调节加湿的新型死端阳极设计

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A novel design of anode chamber has been implemented in an airbreathing PEM fuel cell allowing for stable long-term operation under strictly stoichiometric H_2 consumption with 100% fuel utilization. The developed model allows for selective exchange of water between the anode and the external environment by means of a gas-tight polymer. The gas-tight drying film provides a suitable way for excess water removal from the anode. The present study analyzes in detail the operation of this anode configuration. Electrochemical impedance spectroscopy and polarization curves have been used to explore the cell behavior under different environmental conditions of temperature and relative humidity controlled by means of a climate chamber. The results are compared with those obtained for a similar cell assembled with a conventional anode operating under continuous flow and deadended anode with periodic purging. The stable long-term operation of the 2W cell with this novel design ensures 100% fuel utilization.
机译:阳极室的新颖设计已经在吹气PEM燃料电池中实现,允许在严格化学计量的H_2消耗下进行稳定的长期操作,具有100%的燃料利用。开发的模型允许通过气密聚合物在阳极和外部环境之间选择性交换水。气密干燥薄膜提供一种合适的方法,用于从阳极上除去过量的水。本研究详细分析了该阳极配置的操作。电化学阻抗光谱和偏振曲线已被用于探讨通过气候室的温度和相对湿度的不同环境条件下的电池行为。将结果与用于在连续流动和死亡阳极下操作的常规阳极的类似电池获得的结果进行比较,具有周期性吹扫。具有这种新颖设计的2W电池的稳定长期运行可确保100%的燃料利用。

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