Mathematical Modelling and Simulations of Active Direct Methanol Fuel Cell

IF 0.3 4区 材料科学 Q4 POLYMER SCIENCE Journal of Polymer Materials Pub Date : 2024-03-22 DOI:10.32381/jpm.2023.40.3-4.1
Rabiranjan Murmu, Debashis Roy, H. Sutar
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Abstract

A one dimensional isothermal model is proposed by modelling the kinetics of methanol transport at anode flow channel (AFC), membrane and cathode catalyst layer of direct methanol fuel cell (DMFC). Analytical model is proposed to predict methanol cross-over rate through the electrolyte membrane and cell performance. The model presented in this paper considered methanol diffusion and electrochemical oxidation at the anode and cathode channels. The analytical solution of the proposed model was simulated in a MATLAB environment to obtain the polarization curve and leakage current. The effect of methanol concentration on cell voltage and leakage current is studied. The methanol cross-over has the significant impact on cell performance. The presented model predicts higher leakage current with the increase of methanol feed concentration. The cell performance was predicted at 70°C and various methanol feed concentration. The proposed model was validated with the experimental polarization curve of active DMFC.
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主动式直接甲醇燃料电池的数学建模与模拟
通过模拟直接甲醇燃料电池(DMFC)阳极流道(AFC)、膜和阴极催化剂层的甲醇传输动力学,提出了一个一维等温模型。提出的分析模型可预测甲醇通过电解质膜的交叉速率和电池性能。本文提出的模型考虑了甲醇在阳极和阴极通道的扩散和电化学氧化。在 MATLAB 环境中模拟了所提模型的解析解,得到了极化曲线和泄漏电流。研究了甲醇浓度对电池电压和泄漏电流的影响。甲醇交叉对电池性能有重大影响。所提出的模型预测,随着甲醇进料浓度的增加,漏电流也会增加。预测了电池在 70°C 和不同甲醇给料浓度下的性能。提出的模型与活性 DMFC 的实验极化曲线进行了验证。
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来源期刊
Journal of Polymer Materials
Journal of Polymer Materials 工程技术-高分子科学
CiteScore
1.00
自引率
0.00%
发文量
27
审稿时长
4.7 months
期刊介绍: Journal of Polymer Materials-An International Journal is published quarterly (4 issues per year), which covers broadly most of the important and fundamental areas of Polymer Science and Technology. It reports reviews on current topics and original research results on synthesis of monomers and polymers, polymer analysis, characterization and testing, properties of polymers, structure-property relation, polymer processing and fabrication, and polymer applications. Research and development activities on functional polymers, polymer blends and alloys, composites and nanocomposites, paints and surface coatings, rubbers and elastomeric materials, and adhesives are also published.
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