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A compact CO selective oxidation reactor for solid polymer fuel cell powered vehicle application

机译:用于固体聚合物燃料电池动力车辆应用的紧凑型CO选择性氧化反应器

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摘要

Solid polymer fuel cells (SPFCs) are attractive as electrical power plants for vehicle applications since they offer the advantages of high efficiency, zero emissions, and mechanical robustness. Hydrogen is the ideal fuel, but is currently disadvantaged for automotive applications by the lack of refuelling infrastructure, bulky on-board storage, and safety concerns. On-board methanol reforming offers an attractive alternative due to its increased energy storage density. Since CO is always present as a by-product during the reformig reaction, it must be reduced to a level less than 20 ppm in order to avoid rapid deactivation of the platinum electro-catalyst in the fuel cells. In this paper, a compact CO selective oxidation unit based upon two coated alumium heat exchangers, developed at Loughborough University, is reported. The geometric size of the whole unit is 4 litre and experimental results show that the selective oxidation unit can reduce the CO from up to 2/100 to less than l5 ppm and is suitable for a vehicle fuel cell power plant of 20 kW_e.
机译:固体聚合物燃料电池(SPFC)具有很高的效率,零排放和机械坚固性,因此很有吸引力,可作为车辆用发电厂。氢气是理想的燃料,但由于缺乏加油基础设施,庞大的车载存储空间和安全问题,目前在汽车应用中处于不利地位。车载甲醇重整由于其增加的能量存储密度而提供了一种有吸引力的替代方法。由于CO总是在重整反应期间作为副产物存在,因此必须将其降低至小于20ppm的水平,以避免燃料电池中铂电催化剂的快速失活。本文报道了拉夫堡大学开发的一种基于两个涂层铝热交换器的紧凑型CO选择性氧化装置。整个装置的几何尺寸为4升,实验结果表明,选择性氧化装置可以将CO的含量从2/100降低到15 ppm以下,适用于20 kW_e的汽车燃料电池发电厂。

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