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首页> 外文期刊>Energy Conversion & Management >Flat-chip flame fuel cell operated on a catalytically enhanced porous media combustor
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Flat-chip flame fuel cell operated on a catalytically enhanced porous media combustor

机译:在催化增强型多孔介质燃烧器上运行的平头火焰燃料电池

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The flame fuel cell is a novel kind of fuel cell that directly combines a fuel-rich flame and solid oxide fuel cells together. Because of their simple setup, low cost, quick start-up and shut-down as well as no extra thermal management, flame fuel cells have great potential in micro-combined heat and power systems and portable applications. However, the conventional solid oxide fuel cell configurations including planar ones and tubular ones, may cause some problems when used in flame fuel cells such as thermal stress, secondary flame front, and difficulty for mass production. To solve these problems, a newly developed flat-chip solid oxide fuel cell is proposed to be used in the flame fuel cell in this study. Combining the merits of both planar and tubular solid oxide fuel cells, the flat-chip fuel cell is advantageous for its simple fabrication technology, good thermal shock resistance and feasibility to scale up. A flat-chip solid oxide fuel cell is fabricated and then integrated with a catalytically enhanced porous media combustor, demonstrating a novel flat-chip flame fuel cell system. The heating time for the flat-chip solid oxide fuel cell by the fuel-rich flame is less than 10 min from room temperature to 800 degrees C, with a temperature change rate of 5 degrees C/s in the first stage. The start-up time of the flat-chip flame fuel cell is less than 10 s. When the gas velocity is 6.0 cm/s and the equivalence ratio is 2.0, a peak power density of 179 mW/cm(2) is obtained for a single cell. Although there exists a remarkable temperature gradient, a small current degradation of 0.01 A/h is observed after a constant-voltage discharging at 0.5 V for 8 hrs. In addition, the flat-chip solid oxide fuel cell can be further scaled up in dimension, resulting in higher fuel utilization of flame fuel cell.
机译:火焰燃料电池是一种新型的燃料电池,它将富燃料的火焰和固体氧化物燃料电池直接结合在一起。由于其简单的设置,低成本,快速的启动和关闭以及无需额外的热量管理,火焰燃料电池在微结合的热电系统和便携式应用中具有巨大的潜力。然而,包括平面型和管状型的常规固体氧化物燃料电池构造在用于火焰燃料电池中时可能引起一些问题,例如热应力,二次火焰锋和难以批量生产。为了解决这些问题,本研究提出了一种新开发的扁平芯片固体氧化物燃料电池用于火焰燃料电池。结合平面和管状固体氧化物燃料电池的优点,扁平芯片燃料电池具有制造技术简单,抗热震性好和扩大规模的可行性等优点。制备了扁平的固体氧化物燃料电池,然后与催化增强型多孔介质燃烧器集成在一起,证明了一种新颖的扁平的火焰燃料电池系统。从室温到800摄氏度,扁平燃料固体氧化物燃料电池通过富燃料火焰的加热时间少于10分钟,第一阶段的温度变化率为5摄氏度/秒。扁平燃料电池的启动时间少于10 s。当气体速度为6.0 cm / s,当量比为2.0时,单个电池的峰值功率密度为179 mW / cm(2)。尽管存在明显的温度梯度,但在0.5 V的恒定电压放电8小时后,观察到0.01 A / h的小电流衰减。另外,可以进一步扩大扁平芯片固体氧化物燃料电池的尺寸,从而导致火焰燃料电池的燃料利用率更高。

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