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Effect of Palladium Ratio on the Performance of Direct Formic Acid Microfluidic Fuel Cells

机译:钯比对直接甲酸微流燃料电池性能的影响

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The effects of Pd/C ratio on both the performance of air-breathing direct formic acid microfluidic fuel cells and the bubble pattern on the cells anode surface were investigated. The anode containing palladium and Nafion of 10 mg/cm~2 and 6 mg/cm~2, respectively, was self-made with Pd/C ratios of 75%, 85%, and 95%. 0.3-M, 0.5-M and 1.0-M HCOOH mixed with 0.5-M H _2SO_4 was used as the fuel supplied at a flow rate of 0.5 mL/min. The results showed that the cell having a 75%-Pd/C anode had numerous deep cracks on the electrode surface and caused the CO, bubbles to be trapped on the electrode, while the cell having an 85%-Pd/C anode allowed the bubbles to periodically generate and detach from the electrode surface. The peak power density of the fuel cell fed with 0.5-M HCOOH was 22, 30 and 27 mW/cm2 for cells of 75%, 85% and 95% Pd/C ratio, respectively.
机译:研究了Pd / C比对空气呼吸直接甲酸微流燃料电池性能和电池阳极表面气泡图案的影响。自制的钯和Nafion阳极分别为10 mg / cm〜2和6 mg / cm〜2,Pd / C比率分别为75%,85%和95%。混合有0.5-M H _2SO_4的0.3-M,0.5-M和1.0-M HCOOH被用作以0.5毫升/分钟的流速供应的燃料。结果表明,具有75%-Pd / C阳极的电池在电极表面上有许多深裂缝,并导致CO,气泡滞留在电极上,而具有85%-Pd / C阳极的电池则允许气泡周期性地产生并从电极表面脱离。对于Pd / C比为75%,85%和95%的电池,加有0.5M HCOOH的燃料电池的峰值功率密度分别为22、30和27 mW / cm2。

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