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Study of temperature, air dew point temperature and reactant flow effects on PEMFC performances using electrochemical spectroscopy and voltammetry techniques

机译:使用电化学光谱和伏安技术研究温度,空气露点温度和反应物流对PEMFC性能的影响

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摘要

A single PEMFC has been operated by varying the assembly temperature, the air dew point temperature and the anode/cathode stoichiometry rates with the aim to identify the parameters and combinations of factors affecting the cell performance. Some of the experiments were conducted with low humidified reactants (relative humidity of 12%). The FC characterizations tests have been conducted using in-situ electrochemical methods based on load current and cell voltage signal analysis, namely: polarization curves, EIS measurements, cyclic and linear sweep voltammetries (CV and LSV). The impacts of the parameters on the global FC performances were observed using the polarization curves whereas EIS, CV and LSV test results were used to discriminate the different voltage loss sources. The test results suggest that some parameter sets allow maximal output voltages but can also induce material degradation. For instance, higher FC temperature and air flow values can induce significant electrical efficiency benefits, notably by increasing the reversible potential and the reaction kinetics. However, raising the cell temperature can also gradually dry the FC and increase the risk of membrane failure. LSV has also shown that elevated FC temperature and relative humidity can also accelerate the electrolyte degradation (i.e. slightly higher fuel crossover rate) and reduce the lifetime consequently. PEMFC; Characterization; Electrochemical Impedance Spectroscopy; Cyclic Voltammetry; Linear Sweep Voltammetry
机译:通过改变组件温度,空气露点温度和阳极/阴极化学计量比来操作单个PEMFC,目的是识别影响电池性能的参数和因素组合。一些实验是在低湿反应物(相对湿度为12%)下进行的。 FC表征测试已使用基于负载电流和电池电压信号分析的原位电化学方法进行,即:极化曲线,EIS测量,循环和线性扫描伏安法(CV和LSV)。使用极化曲线观察了参数对整体FC性能的影响,而EIS,CV和LSV测试结果则用于区分不同的电压损耗源。测试结果表明,某些参数集允许最大输出电压,但也会导致材料退化。例如,较高的燃料电池温度和空气流量值可显着提高电效率,特别是通过增加可逆电势和反应动力学来实现。但是,升高电池温度也会逐渐使FC变干并增加膜失效的风险。 LSV还表明,较高的燃料电池温度和相对湿度还会加速电解质的降解(即燃料交换率略高),从而缩短使用寿命。 PEMFC;表征;电化学阻抗谱;循环伏安法线性扫描伏安法

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