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首页> 外文期刊>Journal of power sources >The effect of reservoirs and fuel dilution on the dynamic behavior of a PEMFC
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The effect of reservoirs and fuel dilution on the dynamic behavior of a PEMFC

机译:储层和燃料稀释对PEMFC动力学行为的影响

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Data are presented to characterize the effects of reservoir size and hydrogen dilution on the dynamic behavior of a proton exchange membrane fuel cell (PEMFC) subjected to rapid changes in the voltage when the flowrates are constant. The data consist of the responses of the current density during low fuel stoichiometries in an effort to expand an understanding of the previously observed overshoot/undershoot behavior. That is, recent studies of the dynamic behavior of a PEMFC have shown pseudo-second-order dynamics of the current response to a change in voltage [J. Power Sources (2004); J. Electrochem. Soc. (2004)]. The data reported here lend further evidence that under fuel starved conditions, rapid changes in the cell voltage between 0.7 and 0.5 V yield pressure differences sufficient to create a "vacuum" effect. This vacuum effect may cause fuel to be drawn from the manifold in a stack or cause ambient air to enter a laboratory scale cell. The vacuum effect explained in our previous work [J. Power Sources (2004)] is shown here to depend on diameter and volume of fuel reservoirs and on the concentration of hydrogen in the fuel.
机译:数据被提供以表征储层尺寸和氢稀释对流量恒定时质子交换膜燃料电池(PEMFC)的动态行为的影响,该质子经受电压的快速变化。数据由低燃料化学计量比期间的电流密度响应组成,以扩大对先前观察到的过冲/下冲行为的理解。也就是说,最近对PEMFC的动态行为的研究表明,电流对电压变化的响应具有伪二阶动态特性[J.电源(2004); J.电化学。 Soc。 (2004)]。此处报告的数据提供了进一步的证据,表明在燃料不足的情况下,电池电压在0.7至0.5 V之间快速变化会产生足以产生“真空”效应的压差。这种真空效应可能导致燃料从电池组中的歧管中抽出或导致环境空气进入实验室规模的电池中。真空效应在我们以前的工作中得到了解释[J. [电源(2004)]此处显示取决于燃料容器的直径和体积以及燃料中氢的浓度。

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