使用金属纤维毡作为流场的千瓦级 PEMFC 堆的设计和性能研究

IF 1.3 4区 化学 Q4 ELECTROCHEMISTRY
Guangxuan Lu, Qiao Yan, Shiling Li, Shiyi Chen, Yuchen Li
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引用次数: 0

摘要

该研究介绍了对千瓦级质子交换膜燃料电池(PEMFC)堆的综合设计和评估,其中创新性地采用了不锈钢纤维毡作为流场。对关键运行参数(即运行温度、压力和反应气体相对湿度)对活性面积为 83 平方厘米的 22 个电池堆性能的影响进行了深入研究。在不同的工作条件和输出电流下,对单个电池之间的电压一致性进行了分析。在基本工作条件下,PEMFC 堆的总输出功率达到 1183 W,每个电池的平均电压为 0.6 V。随着工作温度和压力的增加,电堆的输出功率也有明显增加。反应气体相对湿度的最佳范围为 60-80%。随着输出电流的增加,单个电池的电压逐渐降低,电压一致性趋于恶化。达到最佳电压一致性的最佳操作条件随电流密度而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and performance study of a kilowatt-class PEMFC stack with metal fiber felts as flow fields
The study presents a comprehensive design and evaluation of a kilowatt-class proton exchange membrane fuel cell (PEMFC) stack, wherein stainless steel fiber felts are innovatively utilized as flow fields. The impacts of critical operating parameters, namely operating temperature, pressure, and reactant gas relative humidity, on the performance of the 22-cell stack with an active area of 83 cm2 were thoroughly investigated. An analysis of the voltage consistency among individual cells was conducted across varying operating conditions and output currents. The total power output of the PEMFC stack reaches 1183 W under the fundamental operating conditions, where each cell achieves an average voltage of 0.6 V. As the operating temperature and pressure are incremented, the stack’s output power exhibits a noticeable increase. The optimal range for the reactant gas relative humidity is found to be 60–80 %. As the output current increases, the voltages of individual cells gradually decrease and the voltage consistencies tend to deteriorate. The optimal operating conditions for achieving the best voltage consistency vary with current density.
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来源期刊
CiteScore
3.00
自引率
20.00%
发文量
714
审稿时长
2.6 months
期刊介绍: International Journal of Electrochemical Science is a peer-reviewed, open access journal that publishes original research articles, short communications as well as review articles in all areas of electrochemistry: Scope - Theoretical and Computational Electrochemistry - Processes on Electrodes - Electroanalytical Chemistry and Sensor Science - Corrosion - Electrochemical Energy Conversion and Storage - Electrochemical Engineering - Coatings - Electrochemical Synthesis - Bioelectrochemistry - Molecular Electrochemistry
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