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首页> 外文期刊>International journal of hydrogen energy >Experimental measurements of fuel and water crossover in an active DMFC
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Experimental measurements of fuel and water crossover in an active DMFC

机译:活性DMFC中燃料和水交叉的实验测量

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This study measured polarization curves as well as the high-frequency resistance of active direct methanol fuel cell (DMFC) operates at around 80 degrees C with active controls of temperature, methanol concentration, airflow rate, and relative humidity. The relative humidity of the air did not have noticeable impacts on the fuel cell unless the operating temperature was near the evaporation temperature of water (100 degrees C). The hydrophobic water management layer (WML) between the membrane electrode assembly (MEA) and cathode air channel increases the mass transfer resistance and improves the water retention in MEA. Adding a WML increased the peak power density, decreased the ohmic resistance, and improved the fuel efficiency of the fuel cell, especially when it operated near 100 degrees C. This study also quantitatively measured methanol and water crossover as well as the fuel efficiency at different operating currents. The fuel efficiency increased significantly with the increase of the current density. Using a hydrophobic fuel management layer (FML) between the anode fuel channel and MEA reduced the fuel and water crossover rates and increased the ohmic resistance due to the decrease of the water content of the Nafion membrane. The FML improved fuel efficiency by reducing the methanol crossover. The combination of the FML and WML enabled the steady operation of DMFC using highly concentrated methanol solutions (up to 75 wt%). (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该研究测得的偏振曲线以及活性直接甲醇燃料电池(DMFC)的高频电阻在约80℃的温度,甲醇浓度,气流率和相对湿度的主动控制下操作。除非工作温度接近水(100℃)的蒸发温度,否则空气的相对湿度没有对燃料电池产生明显的影响。膜电极组件(MEA)和阴极空气通道之间的疏水水管理层(WML)增加了传质阻力并改善了MEA中的水保持率。增加WML增加峰值功率密度,降低欧姆电阻,提高了燃料电池的燃料效率,特别是当它在近100摄氏度下操作时。该研究还定量测量甲醇和水交叉以及不同的燃料效率操作电流。随着电流密度的增加,燃油效率显着增加。在阳极燃料通道和MEA之间使用疏水性燃料管理层(FML)降低了燃料和水交叉速率,并且由于Nafion膜的含水量的降低而增加了欧姆电阻。通过减少甲醇的交叉来改善燃料效率。 FML和WML的组合使DMFC的稳定运转使用高浓甲醇溶液(高达75wt%)。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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