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Studies on Influence of Cell Temperature in Direct Methanol Fuel Cell Operation

机译:细胞温度在直接甲醇燃料电池运行中的影响研究

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摘要

Directmethanol fuel cells (DMFCs) offer one of the most promising alternatives for the replacement of fossil fuels. A DMFC that had an active Membrane Electrode Assembly (MEA) area of 45 cm2, a squoval-shaped manifold hole design, and a Pt-Ru/C catalyst combination at the anode was taken for analysis in simulation and real-time experimentation. A mathematical model was developed using dynamic equations of a DMFC. Simulation of a DMFC model using MATLAB software was carried out to identify the most influencing process variables, namely cell temperature, methanol flow rate and methanol concentration during a DMFC operation. Simulation results were recorded and analyzed. It was observed from the results that the cell temperature was the most influencing process variable in the DMFC operation, more so than the methanol flow rate and the methanol concentration. In the DMFC, real-time experimentation was carried out at different cell temperatures to find out the optimum temperature at which maximum power density was obtained. The results obtained in simulation and the experiment were compared and it was concluded that the temperature was the most influencing process variable and 333K was the optimum operating temperature required to achieve the most productive performance in power density of the DMFC.
机译:DirectMethanol燃料电池(DMFC)为更换化石燃料提供最有前途的替代品之一。在模拟和实时实验中,对具有45cm 2的有源膜电极组件(MEA)面积的DMFC为45cm 2,垂直形歧管孔设计和PT-RU / C催化剂组合。使用DMFC的动态方程式开发了数学模型。使用MATLAB软件进行DMFC模型的模拟,以识别DMFC操作期间最具影响的过程变量,即细胞温度,甲醇流速和甲醇浓度。记录和分析仿真结果。从该结果观察到细胞温度是DMFC操作中最多的过程变量,比甲醇流速和甲醇浓度更多。在DMFC中,在不同的电池温度下进行实时实验,以找出获得最大功率密度的最佳温度。比较模拟和实验中获得的结果,得出结论是,温度是最大的过程变量,333K是在DMFC的功率密度下实现最富有成效的性能所需的最佳工作温度。

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