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Analyzing the effects of fluctuating methanol feed concentration in active-type direct methanol fuel cell (DMFC) systems

机译:分析活动型直接甲醇燃料电池(DMFC)系统中甲醇进料浓度波动的影响

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In active-type direct methanol fuel cell (DMFC) systems, the methanol feed concentration inevitably fluctuates for various reasons, such as inaccuracy in the methanol sensors or the complexity of injecting additional methanol and/or water into the anode fuel recirculation loop. In this study, we use theoretical computations to examine the effects of fluctuating methanol feed concentration on the time-dependent behavior and resultant cell performance of DMFCs. Using a one-dimensional (1-D) two-phase transient thermal DMFC model, we conducted 1-D transient simulations under various DMFC operating conditions with different anode/cathode stoichiometries, cell operating temperatures, and cathode inlet humidification conditions. The simulation results clearly address the influences of these operating parameters on the evolution of cell voltage, cell temperature, methanol crossover, and overall efficiency, highlighting that fluctuation in methanol concentration on the DMFC performance induces fluctuations in these key profiles. Finally, we propose an optimum strategy to mitigate the influence of the fluctuating methanol feed concentration, i.e., purposely fluctuating the anode or cathode stoichiometry. The simulation results clearly show that when a fluctuating methanol feed concentration is present, a constant cell voltage of approximately 340 mV was successfully maintained by fluctuating the cathode stoichiometry between 3.0 and 4.0. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在主动型直接甲醇燃料电池(DMFC)系统中,甲醇进料浓度不可避免地会因各种原因而波动,例如甲醇传感器中的不精确性或将额外的甲醇和/或水注入阳极燃料再循环回路中的复杂性。在这项研究中,我们使用理论计算来检查甲醇进料浓度波动对DMFCs随时间变化的行为和所得电池性能的影响。使用一维(1-D)两相瞬态热DMFC模型,我们在各种DMFC操作条件下使用不同的阳极/阴极化学计量比,电池工作温度和阴极入口加湿条件进行了1​​-D瞬态模拟。仿真结果清楚地说明了这些工作参数对电池电压,电池温度,甲醇交换和整体效率的影响,强调甲醇浓度对DMFC性能的波动会引起这些关键特性的波动。最后,我们提出了一种最佳策略来减轻甲醇进料浓度波动的影响,即故意改变阳极或阴极化学计量的影响。模拟结果清楚地表明,当甲醇进料浓度存在波动时,通过使阴极化学计量比在3.0至4.0之间波动,可以成功维持约340 mV的恒定电池电压。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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