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首页> 外文期刊>Fuel Processing Technology >Operational characteristics of a passive methanol catalytic combustor assisting vapor generation for direct methanol fuel cells
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Operational characteristics of a passive methanol catalytic combustor assisting vapor generation for direct methanol fuel cells

机译:用于直接甲醇燃料电池的辅助蒸汽产生的无源甲醇催化燃烧器的运行特性

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Searching for a passive method to provide heat for a vapor-feed direct methanol fuel cell (DMFC) is still a challenging technical issue before it is put into practical use. This work develops a passive methanol catalytic combustor based on a pervaporation membrane, which is intended to be used as an assistant heat source for a vapor-feed DMFC. To validate the effectiveness of this method, a traditional bubbling-based system is prepared for comparison. Results show that the pervaporation operation outperforms the bubbling mode and facilitates self-ignition at a lower air feed rate (AFR). The increase of AFR promotes a higher permeation flux of methanol vapor, but may inversely cause heat loss because the enhanced air flow is apt to bring more heat away from the combustor. The AFR has dual effects on the processes of vapor generation and heat dissipation, which must be optimized to realize a balance between these two factors. The dynamic responses of catalyst temperature to the variation of AFR are also investigated in this work. (C) 2014 Elsevier B.V. All rights reserved.
机译:在将其实际投入使用之前,寻找一种无源方法来为蒸气进料直接甲醇燃料电池(DMFC)提供热量仍然是一个具有挑战性的技术问题。这项工作开发了一种基于全蒸发膜的无源甲醇催化燃烧器,该燃烧器旨在用作蒸气进料DMFC的辅助热源。为了验证该方法的有效性,准备了一个传统的基于冒泡的系统进行比较。结果表明,全蒸发操作优于起泡模式,并在较低的空气进给速率(AFR)下促进自燃。 AFR的增加促进甲醇蒸气的更高渗透通量,但是可能相反地引起热损失,因为增强的空气流易于将更多的热量带离燃烧室。 AFR对蒸气产生和散热过程具有双重影响,必须对其进行优化以实现这两个因素之间的平衡。这项工作还研究了催化剂温度对AFR变化的动态响应。 (C)2014 Elsevier B.V.保留所有权利。

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