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A cell-level model for a solid oxide fuel cell operated with syngas from a gasification process

机译:用气化过程中的合成气运行的固体氧化物燃料电池的单元级模型

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A model was developed for determining the current-temperature profiles of a solid oxide fuel cell. The model was integrated by an electrochemical module and a thermal module. The electrochemical module included the three principal modes of polarization (i.e., ohmic, activation and concentration). The thermal module solved the energy and mass conservation equation using a unit cell approach. The integrated model (electrochemical-thermal) was used to analyze the performance of the cell with respect to different operating conditions. In addition, the model was used to analyze the response of the fuel cell under different gasifier compositions. These compositions are expected from the thermal integration of a downdraft gasifier with a solid oxide fuel cell. The results showed the effect of the initial concentration of carbon monoxide, water and hydrogen, with respect to the performance of the cell.
机译:开发了用于确定固体氧化物燃料电池的电流-温度曲线的模型。该模型由电化学模块和热模块集成。电化学模块包括极化的三种主要模式(即,欧姆,活化和浓集)。散热模块使用晶胞方法求解了能量和质量守恒方程。集成模型(电化学-热)用于分析电池在不同操作条件下的性能。此外,该模型还用于分析不同气化炉组成下的燃料电池响应。这些成分是从下浮式气化炉与固体氧化物燃料电池的热结合中获得的。结果表明一氧化碳,水和氢的初始浓度对电池性能的影响。

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