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Modeling and simulation of anode-supported planar intermediate temperature solid oxide fuel cell for integrated gasification fuel cell application

机译:用于整体气化燃料电池的阳极支撑平面中温固体氧化物燃料电池建模与仿真

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The capability of exploiting various fuels is one of the advantages of solid oxide fuel cells (SOFC) on stationary power application, and also a promising solution for using coal through the integrated gasification fuel cell (IGFC) application when combined with a proper coal gasifier and gas reformer. Recently, the anode supported planar SOFC becomes a promising candidate for SOFC commercialization due to its higher power density and lower operation temperature. In the work, SOFC and commercially available coal gasifiers and reformer are modeled in MATLAB. The fuel cell and reformer models are built using electrochemical and reaction kinetics equations with empirical data determined parameters using literature data. The integrated semi-empirical IGFC model and simulation guide the selection of appropriate coal gasifier and reformer for a given SOFC in IGFC application. Tests have been done using two different and representative gasifiers with different syngas to fuel the SOFC, to demonstrate the performance difference and the method for identify the best SOFC, gasifier-reformer match. Simulation results showed good consistency with literature data. The work contributes new integrated coal gasification and SOFC system development for improved energy efficiency and emission reduction.
机译:开发各种燃料的能力是固态氧化物燃料电池(SOFC)在固定电源应用中的优势之一,也是与集成的气化炉结合使用时通过集成气化燃料电池(IGFC)应用来使用煤炭的有前途的解决方案。气体重整器。近来,阳极支撑的平面SOFC由于其较高的功率密度和较低的工作温度而成为有前景的SOFC商业化的候选者。在工作中,在MATLAB中对SOFC和可购得的煤气化炉和重整炉进行了建模。使用电化学和反应动力学方程式建立燃料电池和重整器模型,并根据经验数据使用文献数据确定参数。集成的半经验IGFC模型和仿真指导为IGFC应用中给定的SOFC选择合适的煤气化炉和重整炉。已使用两种具有不同合成气的代表性气化炉为SOFC进行燃料测试,以证明性能差异以及确定最佳SOFC气化炉-重整炉匹配的方法。仿真结果与文献数据具有很好的一致性。这项工作为开发新的集成煤气化和SOFC系统做出了贡献,以提高能源效率和减少排放。

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