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Dynamic characteristics of spherical agglomerate for study of cathode catalyst layers in proton exchange membrane fuel cells (PEMFC)

机译:用于研究质子交换膜燃料电池(PEMFC)阴极催化剂层的球形团聚体的动态特性

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There has been growing interest in the modeling of proton exchange membrane fuel cells (PEMFC) over the last two decades. While a variety of steady-state models have been proposed, literature is scarce in PEMFC dynamic models and transient studies. Typical dynamic models for PEM fuel cell are empirical current-voltage relationships. The internal transients associated with reactant and product species and other components are usually neglected. A detailed dynamic model for spherical agglomerate in PEM fuel cell is presented in this work. The dynamic model includes detailed mathematical equations for conservation of oxygen and hydrogen ions inside the agglomerate. The agglomerate dynamic model is simulated for typical operating conditions inside the PEMFC catalyst layer. Simulation studies show that the time scales in which the dynamics of agglomerate potential and concentration of dissolved oxygen respond differ by several orders of magnitude. Transient response of agglomerate current to step changes in surface boundary conditions are also presented. Reasons for the typical characteristics observed in the dynamic behavior of agglomerate current are also highlighted.
机译:在过去的二十年中,人们对质子交换膜燃料电池(PEMFC)的建模越来越感兴趣。虽然已经提出了多种稳态模型,但PEMFC动态模型和瞬态研究中的文献很少。 PEM燃料电池的典型动态模型是经验电流-电压关系。通常忽略与反应物和产物种类以及其他组分相关的内部瞬变。这项工作提出了一个详细的动力学模型,用于PEM燃料电池中的球形团聚体。该动力学模型包括详细的数学方程式,用于保护团聚体内部的氧和氢离子。针对PEMFC催化剂层内部的典型运行条件,模拟了团聚体动力学模型。仿真研究表明,凝聚势的动态变化和溶解氧浓度响应的时间尺度相差几个数量级。还介绍了团聚电流对表面边界条件阶跃变化的瞬态响应。还着重指出了在团聚电流的动态行为中观察到的典型特征的原因。

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