首页> 外文会议>World hydrogen energy conference;WHEC 2008 >BIOGAS FROM ANAEROBIC DIGESTION AS BIOGENOUS FUEL FOR SOLID OXIDE FUEL CELLS: AN EXPERIMENTAL ASSESSMENT WITH A SIMULATED SYNGAS
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BIOGAS FROM ANAEROBIC DIGESTION AS BIOGENOUS FUEL FOR SOLID OXIDE FUEL CELLS: AN EXPERIMENTAL ASSESSMENT WITH A SIMULATED SYNGAS

机译:厌氧消化中的生物气作为固体氧化物燃料电池的生物燃料:一种模拟SYNGAS的实验评估

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Solid oxide fuel cells high flexibility on fuel typology allows to foresee their future use with a large spam of biogenous fuels. Coupled with their high efficiency in energy transformation, this characteristic could become a useful basis for plants devoted to the reduction of greenhouse gas emissions, and for the widespread use of residential renewable fuels. An interesting feature is the use of biogas from anaerobic digestion of algae cultures. This is an high quality fuel in terms of permanent gas compounds and impurities consisting mainly of hydrogen (around 60%) and the rest CO_2. However some requirements have to be taken into account concerning the presence and the effect of gas trace compounds like sulphur, halides and others on the cells' anodes. Before using a real biogas, a investigation on the effects on the cell behavior and degradation can be made with a syngas of similar composition. This paper investigates the utilization of the syngas simulating the biogas in single planar cells. Planar solid oxide fuel cells with NiO/YSZ traditional anodes were tested in order to evaluate the electrochemical cell performance. The evaluation was achieved by taking current voltage measurements at different temperatures and syngas composition. Also thermodynamic calculations were conducted to account for water gas shift and Boudouard reactions.
机译:固体氧化物燃料电池在燃料类型方面具有高度灵活性,可以预见其在未来将与大量垃圾生物燃料一起使用。加上其在能源转换中的高效率,该特性可能成为致力于减少温室气体排放的植物以及广泛使用民用可再生燃料的有用基础。一个有趣的特征是藻类培养物厌氧消化产生的沼气的使用。就永久性气体化合物和主要由氢(约60%)和其余CO_2组成的杂质而言,这是一种高质量的燃料。但是,必须考虑一些有关气体微量化合物(如硫,卤化物等)的存在及其作用对电池阳极的要求。在使用真实的沼气之前,可以使用具有相似成分的合成气来研究对细胞行为和降解的影响。本文研究了模拟单个沼气池中沼气的合成气的利用。测试了具有NiO / YSZ传统阳极的平面固体氧化物燃料电池,以评估电化学电池的性能。该评估是通过在不同温度和合成气成分下进行电流电压测量来实现的。还进行了热力学计算以考虑水煤气变换和布杜德反应。

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