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Thermo-economic modeling and analysis of an NG-fueled SOFC-WGS- TSA-PEMFC hybrid energy conversion system for stationary electricity power generation

机译:NG固定式发电用SOFC-WGS-TSA-PEMFC混合能源转换系统的热经济建模和分析

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摘要

The natural gas fueled system coupling solid oxide fuel cell, water gas shift reaction, thermal swing adsorption and proton exchange membrane fuel cell (SOFC-WGS-TSA-PEMFC) could have a high efficiency and fast response for power generation. The thermo-economic analyses show that the hybrid system could have a better economy for electricity generation, whose specific electricity cost with LaNi_5 as the thermal swing adsorption (TSA) working medium is 4.058 0 /kW h only, remarkably lower than that of a standard power plant (5.46 $ /kW h). The sensitivity analysis indicates the low sensitivity of the system to the market price fluctuation. When using the Mg+2 wt%Ni or TiFe metal hydride with the higher hydrogen capacity and the cheaper price as the TSA working medium for H_2 production, the specific electricity energy cost can be further reduced to 3.958 ¢ /kW h, which could be more economical than that with the traditional pressure swing adsorption or the membrane reactor for H_2 production. In addition, the large-scale electricity power generation helps to cut down the system specific cost. These results reveal that the hybrid system could be a promising and economical energy conversion system for stationary electricity power generation. © 2019 Elsevier Ltd. All rights reserved.
机译:结合固体氧化物燃料电池,水煤气变换反应,热变吸附和质子交换膜燃料电池(SOFC-WGS-TSA-PEMFC)的天然气燃料系统可能具有较高的效率和快速的发电响应能力。热经济分析表明,该混合动力系统具有较好的发电经济性,采用LaNi_5作为热变吸附(TSA)工作介质的单位电费仅为4.058 0 / kW h,明显低于标准发电厂(5.46 $ / kW h)。敏感性分析表明系统对市场价格波动的敏感性较低。当使用具有较高氢气容量和价格便宜的Mg + 2 wt%Ni或TiFe金属氢化物作为生产H_2的TSA工作介质时,单位电能成本可以进一步降低至3.958 ¢ / kW h,这可能是比传统的变压吸附法或用于H_2生产的膜反应器更经济。另外,大规模发电有助于降低系统的特定成本。这些结果表明,混合动力系统可能是用于固定发电的有前途且经济的能量转换系统。 ©2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2020年第1期|116613.1-116613.11|共11页
  • 作者单位

    Shaanxi Key Laboratory of Energy Chemical Process Intensification School of Chemical Engineering and Technology Xi'an fiaotong University Xi'an China Building Energy Research Croup Department of Building and Real Estate The Hong Kong Polytechnic University Hong Kong China;

    Shaanxi Key Laboratory of Energy Chemical Process Intensification School of Chemical Engineering and Technology Xi'an fiaotong University Xi'an China;

    Building Energy Research Croup Department of Building and Real Estate The Hong Kong Polytechnic University Hong Kong China Department of Thermal Science and Energy Engineering University of Science and Technology of China Hefei 230026 Anhui China;

    Building Energy Research Croup Department of Building and Real Estate The Hong Kong Polytechnic University Hong Kong China;

    Shaanxi Key Laboratory of Energy Chemical Process Intensification School of Chemical Engineering and Technology Xi'an fiaotong University Xi'an China State Key Laboratory of Multiphase Flow in Power Engineering Xi'an Jiaotong University Xi'an China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SOFC; PEMFC; Thermo-economic modeling; Metal hydride; Electricity power generation;

    机译:SOFC;PEMFC;热经济模型;金属氢化物发电;

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