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Comprehensive mass transport modeling technique for the cathode side of an open-cathode direct methanol fuel cell

机译:开式阴极直接甲醇燃料电池阴极侧的综合传质建模技术

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A systematic method for the steady-state modeling of mass transport phenomena and electrochemical behavior focusing on the cathode side of a direct methanol fuel cell (DMFC) with an open-cathode design is presented and demonstrated using an experimental system. The architecture features an internal water-recovery technology that promotes back-convection of water from the cathode to the anode through a polymer electrolyte permeable membrane that includes laser-drilled holes. Eight adjustable modeling parameters are estimated from experimental data from a prototype system, and a model validation study shows that predictions of water venting rates and of cell voltage have errors better than 9% when extrapolating to conditions not used for parameter estimation. Illustrations of the use of the model include an analysis of performance at various flow rates of feed air, operating temperatures and currents, and a prediction of the effect of alternative material designs for selected cell layers. The approach serves as a paradigm for the development of general models for open-cathode active-feed DMFC systems. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出并演示了使用开放实验的系统模型,该模型以直接甲醇燃料电池(DMFC)的阴极侧为阴极,设计了传质现象和电化学行为的稳态模型。该架构采用内部水回收技术,该技术可通过包含激光钻孔的聚合物电解质可渗透膜促进水从阴极到阳极的反对流。从原型系统的实验数据中估计出八个可调整的建模参数,并且模型验证研究表明,当推算到未用于参数估计的条件时,泄水率和电池电压的预测误差优于9%。该模型的使用说明包括对各种进料空气流速,工作温度和电流的性能进行分析,并预测所选电池层的替代材料设计的效果。该方法是开发开放式阴极主动进料DMFC系统通用模型的范例。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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