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Study of crossover and depletion effects in laminar flow-based fuel cells using electrochemical impedance spectroscopy

机译:层流燃料电池的交叉和耗尽效应的电化学阻抗谱研究

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摘要

The impedance characteristics of the laminar flow-based fuel cells (LFFCs), which are also called microfluidic fuel cells (MFFCs), are measured to study the crossover and depletion phenomena. To study the effect of the crossover and depletion separately, the impedances are measured at different flow rates simulating different crossover conditions; while the effect of depletion is controlled by keeping the current density constant through changing the fuel concentration at different flow rates. Then the depletion effect is studied by measuring the impedance characteristics of the cell at various fuel concentrations. It is shown that the crossover affects the moderate frequency ranges in the measured Nyquist plot; whereas depletion impacts the low frequency domain. Finally, the impedance measurements at various potentials suggest that increasing the current density increases the effect of crossover while decreases the effect of depletion. This could be the result of carbon dioxide production in the anode.
机译:测量层流燃料电池(LFFC)(也称为微流体燃料电池(MFFC))的阻抗特性,以研究交叉和耗尽现象。为了分别研究交叉和耗尽的影响,在模拟不同交叉条件的不同流速下测量阻抗。通过在不同流速下改变燃料浓度来保持电流密度恒定来控制耗尽效应。然后,通过测量各种燃料浓度下电池的阻抗特性来研究耗尽效应。结果表明,分频器会影响测得的奈奎斯特曲线中的中等频率范围。而耗尽会影响低频域。最后,在各种电势下的阻抗测量结果表明,增加电流密度会增加交叉效应,同时会减少耗尽效应。这可能是阳极中产生二氧化碳的结果。

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