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An internal reformer for a pressurised SOFC system

机译:加压SOFC系统的内部重整器

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A novel reformer design has been demonstrated that converts the methane required for a multi kilowatt SOFC stack. Results show the influence of temperature and the benefits of operating at elevated pressure on the reforming-catalyst fundamental reaction kinetics. Due to the high heat demand of the steam reforming reaction, efficient heat transfer between the SOFC stack and the reforming catalyst is essential. Parameters such as the volume/surface area ratio, choice of catalyst, and catalyst metal loading are key to the design, and these have been determined through a combination of computer modelling and experimental measurements. The thermal properties of the unit have been evaluated over a range of temperatures and fuel compositions that simulate system operating-conditions in the final product.
机译:已经证明了一种新颖的重整器设计,该设计可转换多千瓦SOFC烟囱所需的甲烷。结果表明温度的影响和在高压下操作的益处对重整催化剂基本反应动力学的影响。由于蒸汽重整反应的高热量需求,因此SOFC堆和重整催化剂之间的有效传热是必不可少的。诸如体积/表面积比,催化剂的选择和催化剂金属负载等参数是设计的关键,并且这些参数已经通过计算机建模和实验测量的组合来确定。已在模拟最终产品中系统运行条件的温度和燃料成分范围内评估了该装置的热性能。

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