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Thermodynamic and thermoeconomic analysis of a system with biomass gasification, solid oxide fuel cell (SOFC) and Stirling engine

机译:具有生物质气化,固体氧化物燃料电池(SOFC)和斯特林发动机的系统的热力学和热经济学分析

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摘要

Thermodynamic and thermoeconomic investigations of a small-scale integrated gasification solid oxide fuel cell (SOFC) and Stirling engine for combined heat and power (CHP) with a net electric capacity of 120 kW_e have been performed. Woodchips are used as gasification feedstock to produce syngas, which is then utilized to feed the anode side of the SOFC stacks. A thermal efficiency of 0.424 LHV (lower heating value) for the plant is found to use 89.4 kg/h of feedstock to produce the above mentioned electricity. Thermoeconomic analysis shows that the production price of electricity is 0.1204 $/kWh. Furthermore, hot water is considered as a by-product, and the cost of hot water is found to be 0.0214 $/kWh. When compared to other renewable systems of similar scales, this result shows that if both SOFC and Stirling engine technology enter the commercialization phase, then they can deliver electricity at a cost that is competitive with the corresponding renewable systems of the same size.
机译:对净容量为120 kW_e的小型综合气化固体氧化物燃料电池(SOFC)和斯特林发动机的热电联产(CHP)进行了热力学和热经济学研究。木片用作气化原料以生产合成气,然后将其用于进料SOFC堆的阳极侧。发现该工厂的热效率为0.424 LHV(较低的热值),使用89.4 kg / h的原料生产上述电力。热经济分析表明,电力生产价格为0.1204美元/千瓦时。此外,热水被视为副产品,热水成本为0.0214美元/ kWh。与其他类似规模的可再生能源系统相比,该结果表明,如果SOFC和斯特林发动机技术都进入了商业化阶段,则它们可以以与相应规模的相应可再生能源系统竞争的成本提供电力。

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