首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >TRANSIENT MODEL OF HEAT, MASS, AND CHARGE TRANSFER AS WELL AS ELECTROCHEMISTRY IN THE CATHODE CATALYST LAYER OF A PEMFC
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TRANSIENT MODEL OF HEAT, MASS, AND CHARGE TRANSFER AS WELL AS ELECTROCHEMISTRY IN THE CATHODE CATALYST LAYER OF A PEMFC

机译:PEMFC阴极催化剂层中传热,传质和电荷转移的瞬态模型以及电化学

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摘要

A transient model of the cathode catalyst layer of a proton exchange membrane fuel cell is presented. The catalyst layer structure can be described as a superposition of the polymer membrane, the backing layer, and some additional platinum particles. The model, which incorporates some of the features of the pseudo-homogeneous models currently present in the literature, considers the kinetics of the electrochemical reaction taking place at the platinum surface, the proton transport through the polymer agglomerates, and the oxygen and water transport within the pores as well as the membrane material of the catalyst layer. Due to the lower porosity of this region and the higher liquid water content, the catalyst layer can be current limiting in the fuel cell. Furthermore, since the cost of the catalyst material is critical, it is important to have a model predicting the effective utilization of this catalyst layer as well as one, which gives insights into how it might be improved. Equations are presented for the mass conservation of reactants and products, the electrical and ionic currents, and the conservation of energy. A discussion of a number of the closure relations such as the Butler-Volmer equation employed is included as is a discussion of the initial and boundary conditions applied. The mathematical model is solved using a finite elements approach developed at I.U.S.T.I.
机译:提出了质子交换膜燃料电池阴极催化剂层的瞬态模型。催化剂层的结构可以描述为聚合物膜,背衬层和一些其他铂颗粒的叠加。该模型结合了当前文献中存在的伪均相模型的某些特征,该模型考虑了发生在铂表面的电化学反应的动力学,质子通过聚合物团聚物的传输以及氧和水在其中的传输。孔以及催化剂层的膜材料。由于该区域的较低的孔隙率和较高的液态水含量,催化剂层可以限制燃料电池中的电流。此外,由于催化剂材料的成本至关重要,因此拥有一个可预测该催化剂层以及该催化剂层的有效利用的模型非常重要,它可以为如何改进该催化剂层提供见解。为反应物和产物的质量守恒,电流和离子流以及能量守恒提供了方程。包括对许多闭合关系的讨论,如采用的Butler-Volmer方程,以及对所应用的初始条件和边界条件的讨论。使用I.U.S.T.I.开发的有限元方法求解数学模型。

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