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Quantification of the Improvement of Performance of Solid Oxide Fuel Cell Using Chiller-Based Fuel Recirculation

机译:基于冷却器的燃料再循环对固体氧化物燃料电池性能改进的量化

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摘要

Solid oxide fuel cells operate at high temperature, typically in the range 650-850 ℃, utilizing between 50% and 75% of fuel. The remaining fuel can be either burned in a post-combustor located downstream of the solid oxide fuel cells (SOFC) stack or partially recycled. Several of the SOFC-based power systems include recirculation which is used to supply the steam to the fuel processing unit based on steam reforming. In such a system, the recycled stream makes it possible to eliminate the supply of water from the external source. In the same time, recirculation aids in increasing the overall fuel utilization in the power system. As a result the efficiency increases by 5-12% points. The electrochemical reaction in SOFC generates a substantial amount of water by combining the hydrogen molecules with oxygen extracted from the air entering the cathodic compartments. The recycled stream contains water vapor which is circulated in the recycled loop. In the current analysis, the system for recirculation of the anodic off-gas with complete removal of water was proposed and studied. Performance of a planar cell operated with different rates of recycling was studied using the experimental setup with chiller-based recirculation. Quantification of the improvement of the efficiency was based on the analysis of the increase of voltage of cell operated at a given current density. The experimental study demonstrated that the performance of a stand-alone SOFC can be increased by 18-31%. Additionally, the numerical model was proposed to determine the performance in other operating conditions.
机译:固态氧化物燃料电池可在650-850℃的高温下运行,消耗50%至75%的燃料。剩余的燃料可以在位于固体氧化物燃料电池(SOFC)下游的后燃烧器中燃烧,也可以部分回收。一些基于SOFC的电力系统包括再循环,该再循环用于基于蒸汽重整将蒸汽供应到燃料处理单元。在这样的系统中,再循环流使得可以消除来自外部源的水供应。同时,再循环有助于提高动力系统中的整体燃料利用率。结果,效率提高了5-12%。 SOFC中的电化学反应通过将氢分子与从进入阴极室的空气中提取的氧气结合而产生大量水。循环流中包含水蒸气,水蒸气在循环回路中循环。在当前的分析中,提出并研究了完全去除水的阳极废气再循环系统。使用基于冷却器的再循环的实验装置,研究了以不同回收率运行的平面电池的性能。效率提高的量化基于对在给定电流密度下工作的电池电压升高的分析。实验研究表明,独立式SOFC的性能可以提高18-31%。另外,提出了数值模型来确定在其他操作条件下的性能。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2020年第2期|18-21|共4页
  • 作者

  • 作者单位

    Department of High Temperature Electrochemical Processes (HiTEP) Institute of Power Engineering Warsaw 02-981 Poland National Fuel Cell Research Center (NFCRC) University of California Irvine CA 92697-3550;

    Department of High Temperature Electrochemical Processes (HiTEP) Institute of Power Engineering Warsaw 02-981 Poland Institute of Heat Engineering Warsaw University of Technology Warsaw 00-665 Poland;

    Institute of Heat Engineering Warsaw University of Technology Warsaw 00-665 Poland;

    Department of High Temperature Electrochemical Processes (HiTEP) Institute of Power Engineering Warsaw 02-981 Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alternative energy sources; fuel recirculation; hydrogen energy; fuel cells; SOFC;

    机译:替代能源;燃料再循环;氢能燃料电池;燃料电池;
  • 入库时间 2022-08-18 05:18:53

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