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Investigation of fin based oxygen supply modules on the performance of air-breathing polymer electrolyte membrane fuel cells

机译:基于鳍片的供氧模块对透气聚合物电解质膜燃料电池性能的研究

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摘要

In an effort to identify an optimized performing top-layer for air-breathing polymer electrolyte membrane (ABPEM) fuel cells, the following strategies were employed to evaluate thin-fin and duct top-layer arrangements: polarization testing, electrochemical impedance spectroscopy testing, Schlieren imaging, and infrared imaging. The duct arrangement was tested under a vertical configuration, while the thin-fin top-layer was tested for both horizontal and vertical orientations. The two top-layers under consideration were introduced and tested at temperatures ranging from room temperature to 50℃. To maintain the fuel cell temperature at the desired testing conditions, an external heater was used. Additionally, the fuel cell itself was designed to have a large thermal mass, in order to minimize self-heating temperature fluctuations resulting from the electrochemical reactions. From the experiments, it was found that vertical configurations for both top-layers show similar performance. However, the performance of the horizontal configuration is the least efficient due to water droplet formation on the Gas Deficient Layer (GDL) and impeded airflow by the large cathode plate. It is concluded that, due to thin-fin top-layer's simplicity in design and suitability to a variety of configurations and temperatures, the thin-fin design presents a potentially effective solution as a top-layer for ABPEM fuel cells among the prototypes.
机译:为了确定用于空气呼吸的聚合物电解质膜(ABPEM)燃料电池的性能最佳的顶层,采用了以下策略来评估薄翅片和导管的顶层布置:极化测试,电化学阻抗谱测试,Schlieren成像和红外成像。管道布置在垂直配置下进行了测试,而薄翅片顶层在水平和垂直方向上均进行了测试。引入了所考虑的两个顶层,并在室温至50℃的温度范围内进行了测试。为了将燃料电池温度保持在所需的测试条件下,使用了外部加热器。另外,燃料电池本身被设计成具有大的热质量,以最小化由电化学反应引起的自热温度波动。从实验中发现,两个顶层的垂直配置都显示出相似的性能。但是,由于在气体不足层(GDL)上形成水滴以及大阴极板阻碍了气流,因此水平配置的性能效率最低。结论是,由于薄鳍顶层的设计简单性以及对各种配置和温度的适应性,薄鳍设计为原型中的ABPEM燃料电池顶层提供了潜在的有效解决方案。

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