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An experimental investigation of a co-generation energy system using a tubular SOFC: A renewable energy solution for power and heat

机译:使用管状SOFC的热电联产能源系统的实验研究:电力和热能的可再生能源解决方案

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This paper presents the performance analysis of a co-generation energy system using a tubular Solid Oxide Fuel Cell (TSOFC). In our experiment, a single tubular SOFC was investigated which has the power density of 35∼40W/cm2 and operating temperature between 600–800°C. The cathode and anode are made from Nickel (Ni) and Lanthanum Strontium Manganite (LSM) respectively. The electrolyte is made of Yttria-Stabilized Zirconia 8 mole% ceramic powder with a thickness of 3×10−5m. In practical, fuel cell is operated at two temperatures of 650°C and 750°C. For fuel flow rate of 250 ml/min, we got the maximum DC voltage of 1.1V at operating temperature of 750°C. We also got the overall efficiency of the cell is about 50.06%. Hence, this renewable technology can be widely used for electrifying the remote areas where electricity is not available; besides in industry where huge thermal energy is needed for refrigeration or other heating purposes.
机译:本文介绍了使用管状固体氧化物燃料电池(TSOFC)的热电联产能源系统的性能分析。在我们的实验中,研究了一种单管式SOFC,其功率密度为35〜40W / cm 2 ,工作温度在600-800°C之间。阴极和阳极分别由镍(Ni)和镧锶锰(LSM)制成。该电解质由氧化钇稳定的8摩尔%的氧化锆陶瓷粉末制成,厚度为3×10 -5 m。实际上,燃料电池在650℃和750℃的两个温度下工作。对于250 ml / min的燃料流量,我们在750°C的工作温度下获得了1.1V的最大直流电压。我们还得到了该电池的整体效率约为50.06%。因此,这种可再生技术可以广泛用于为无法供电的偏远地区提供电力。除了在工业中需要大量热能用于制冷或其他加热目的之外。

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