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Compact Direct Methanol Fuel Cell: Design Approach Using Commercial Micropumps

机译:紧凑型直接甲醇燃料电池:使用商业微泵的设计方法

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Direct methanol fuel cells (DMFC) are typically supplied under pressure or capillary action with a solution of methanol in water optimized for the best specific power and power density at an operating temperature of about 60 degrees C. Methanol and water consumption at the anode together with water and methanol losses through membrane due to crossover create an imbalance over time so the fuel concentration at the anode drifts from the optimal ratio. In the present study, we demonstrate a DMFC with a means for continuous adjustment of water and methanol content in the anode fuel mixture of an air-breathing DMFC to maintain the optimal concentration for maximum and continuous power. Two types of piezoelectric micropumps were programmed to deliver the two liquids at the designated rate to maintain optimal concentration at the anode during discharge. The micropumps operate over a wide range of temperature, can be easily reprogrammed and can operate in any orientation. A study of performance at different current densities showed that at 100 mA/cm(2), the self-contained, free convection, air-breathing cell delivers 31.6 mW/cm(2) of electrode surface with thermal equilibrium reached at 52 degrees C. The micropumps and controllers consume only 2.6% of this power during 43 h of continuous unattended operation. Methanol utilization is 1.83Wh cm(-3).
机译:直接甲醇燃料电池(DMFC)通常在高温下优化的水中甲醇的甲醇的压力或毛细管作用下供应,以在约60℃甲醇的工作温度下优化的水中的最佳特定功率和功率密度。由于交叉引起的水和甲醇通过膜损失,随着时间的推移产生不平衡,因此阳极处的燃料浓度从最佳比率漂移。在本研究中,我们证明了一种具有用于连续调节空气呼吸DMFC的阳极燃料混合物中水和甲醇含量的方法的DMFC,以保持最大和连续功率的最佳浓度。编程了两种类型的压电微泵,以在指定速率下递送两个液体,以在放电期间保持在阳极处的最佳浓度。微泵在宽范围内操作,可以轻松重新编程,可以以任何方向运行。对不同电流密度的性能的研究表明,在100mA / cm(2)时,自包含的自由对流,空气呼吸电池提供31.6mW / cm(2)个电极表面,其热平衡达到52℃ 。微泵和控制器在43小时的连续无人参与操作期间仅消耗了2.6%的功率。甲醇利用率为1.83Wh cm(-3)。

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