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Polymer electrolyte fuel cell experimental and characterization studies using electrochemical impedance spectroscopy.

机译:使用电化学阻抗谱的高分子电解质燃料电池实验和表征研究。

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The need for an efficient, nonpolluting power source has resulted in increased attention in Polymer Electrolyte Fuel Cells (PEFC's) powered applications focusing in low cost, high-reliability and high performance. Additionally, the low operating temperatures and high-energy conversion make the PEFC a convenient option. In this research impedance spectroscopy is used for the characterization and understanding of fuel cell performance losses. A H2/O2 PEFC with a Pt/Ru-Nafion ® 117 membrane-electrode assembly was used in a range of 3.4 to 9.6 and 1.6 to 5.1 mL/min for H2 and O2 flow rates, respectively. Cell temperatures were between 27°C to 47°C. The technique allowed us to determine the sources and nature of the voltage losses and the kinetics effects. Anode charge transfer resistance values were around 0.019 ohms. Membrane resistance values (around 0.5 ohm-cm2) and charge transfer values as a function of overpotential were determined (Cathode charge transfer resistance values presented an average Tafel slope of 116 mv/dec). Other findings include the diffusion problems encountered when reactant gases are not fed stoichiometrically.
机译:对高效,无污染电源的需求已引起人们对以聚合物电解质燃料电池(PEFC)为动力的应用的关注,该应用关注低成本,高可靠性和高性能。此外,低工作温度和高能量转化率使PEFC成为方便的选择。在这项研究中,阻抗谱用于表征和理解燃料电池性能损失。带有Pt / Ru-Nafion ® 117膜电极组件的AH 2 / O 2 PEFC在3.4至9.6的范围内使用, H 2 和O 2 流速分别为1.6至5.1 mL / min。电池温度在27°C至47°C之间。该技术使我们能够确定电压损耗的来源和性质以及动力学效应。阳极电荷转移电阻值约为0.019欧姆。确定了膜电阻值(约0.5 ohm-cm 2 )和作为超电势函数的电荷转移值(阴极电荷转移电阻值呈现116 mv / dec的平均Tafel斜率)。其他发现包括当未化学计量加入反应气体时遇到的扩散问题。

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