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Analysis of design variables for an efficient natural gas steam reforming process comprised in a small scale hydrogen fueling station

机译:小型氢气加气站中高效天然气蒸汽重整过程的设计变量分析

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摘要

Natural gas steam reforming process comprised in a small scale H_2-fueling station for on-site hydrogen production was simulated and analyzed. The effects of process variables on the process efficiency of hydrogen production were investigated, and their optimum set point values were suggested to minimize the sizes of the process sub-units and to secure a stable operability of the reforming process. Steam to carbon (S/C) ratio of the reforming reactants was found to be a crucial parameter mostly governing both the hydrogen production efficiency and the stable operability of the process. In this study, a process run was assumed stable if feed water (WR) as a reforming reactant could have been completely evaporated into dry steam through a heat recovery steam generator (HRSG). The optimum S/C ratio was 3.0 where the process efficiency of hydrogen production was maximized and the stable operability of the process was secured. The optimum feed rates of natural gas (NCR) and WR as reforming reactants and of natural gas (NGB) as a burner fuel were also determined for a target rate of hydrogen production, 27 Nm~3/h. Set point temperatures of the combustion flue gas (CFG) and the reformed gas (RFC) from the reformer had no effects on the hydrogen production efficiency, however, they were important parameters affecting the stable operability of the process. The effect of the set point temperatures of the RFC from cooler and the CFG from HRSG on the hydrogen production efficiency was not much significant as compared to the S/C ratio, but needed to be adjusted because of their considerable effects on the stable operability of the process and the required heat transfer areas in cooler and HRSG.
机译:模拟并分析了在小型H_2加油站中用于现场制氢的天然气蒸汽重整过程。研究了工艺变量对制氢效率的影响,并提出了它们的最佳设定值,以最大程度地减少工艺亚单元的尺寸并确保重整过程的稳定可操作性。发现重整反应物的蒸汽与碳(S / C)之比是关键的参数,主要控制制氢效率和工艺的稳定可操作性。在这项研究中,如果进水(WR)作为重整反应物可以通过热回收蒸汽发生器(HRSG)完全蒸发成干蒸汽,则认为该过程运行稳定。最佳的S / C比为3.0,其中制氢的工艺效率最大化,并且确保了工艺的稳定可操作性。对于目标制氢速率(27 Nm〜3 / h),还确定了作为重整反应物的天然气(NCR)和WR和作为燃烧器燃料的天然气(NGB)的最佳进料速率。来自重整器的燃烧烟道气(CFG)和重整气(RFC)的设定点温度对制氢效率没有影响,但是,它们是影响该过程稳定可操作性的重要参数。与S / C比相比,来自冷却器的RFC和来自HRSG的CFG的设定点温度对制氢效率的影响不大,但由于它们对HFC稳定运行的影响很大,因此需要对其进行调整。冷却器和HRSG中的过程以及所需的传热区域。

著录项

  • 来源
    《Renewable energy》 |2012年第2012期|p.234-242|共9页
  • 作者单位

    Dept. of Fire Safety, Gwangju University, Cwangju 503-703, Republic of Korea;

    Hydrogen Energy Research Center, Korea Institute of Energy Research, Daejeon 305-343, Republic of Korea;

    Hydrogen Energy Research Center, Korea Institute of Energy Research, Daejeon 305-343, Republic of Korea;

    Hydrogen Energy Research Center, Korea Institute of Energy Research, Daejeon 305-343, Republic of Korea;

  • 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

    methane steam reforming; process simulation; hydrogen fueling station; process efficiency;

    机译:甲烷蒸汽重整;过程模拟;加氢站工艺效率;

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