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Modelling of tubular-designed solid oxide fuel cell with indirect internal reforming operation fed by different primary fuels

机译:管状设计的固体氧化物燃料电池的内部间接重整操作,由不同的主燃料供料建模

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摘要

Mathematical models of an indirect internal reforming solid oxide fuel cell (IIR-SOFC) fed by four different primary fuels, i.e., methane, biogas, methanol and ethanol, are developed based on steady-state, heterogeneous, two-dimensional and tubular-design SOFC models. The effect of fuel type on the thermal coupling between internal endothermic reforming with exothermic electrochemical reactions and system performance are determined. The simulation reveals that an IIR-SOFC fuelled by methanol provides the smoothest temperature gradient with high electrochemical efficiency. Furthermore, the content of CO_2 in biogas plays an important role on system performance since electrical efficiency is improved by the removal of some CO_2 from biogas but a larger temperature gradient is expected.rnSensitivity analysis of three parameters, namely, a operating pressure, inlet steam to carbon (S:C) ratio and flow direction is then performed. By increasing the operating pressure up to 10bar, the system efficiency increases and the temperature gradient can be minimized. The use of a high inlet S:C ratio reduces the cooling spot at the entrance of reformer channel but the electrical efficiency is considerably decreased. An IIR-SOFC with a counter-flow pattern (as based case) is compared with that with co-flow pattern (co-flow of air and fuel streams through fuel cell). The IIR-SOFC with co-flow pattern provides higher voltage and a smoother temperature gradient along the system due to superior matching between heat supplied from electrochemical reaction and heat required for steam reforming reaction; thus it is expected to be a better option for practical applications.
机译:基于稳态,非均质,二维和管状设计,开发了由四种不同的主要燃料(即甲烷,沼气,甲醇和乙醇)供入的间接内部重整固体氧化物燃料电池(IIR-SOFC)的数学模型SOFC模型。确定了燃料类型对内部放热重整与放热电化学反应与系统性能之间的热耦合的影响。该模拟表明,以甲醇为燃料的IIR-SOFC可提供最平滑的温度梯度,并具有较高的电化学效率。此外,沼气中CO_2的含量对系统性能也起着重要作用,因为通过去除沼气中的一些CO_2可以提高电效率,但可以预期会有较大的温度梯度。-对工作压力,入口蒸汽三个参数的灵敏度分析碳(S:C)比和流动方向。通过将工作压力提高到10bar,系统效率提高了,温度梯度可以降至最低。高入口S:C比率的使用减少了重整器通道入口处的冷却点,但是电效率却大大降低了。将具有逆流模式的IIR-SOFC(基于情况)与具有并流模式的IIR-SOFC(通过燃料电池的空气和燃料流的共同流)进行比较。具有同流模式的IIR-SOFC可提供更高的电压和更平滑的温度梯度,这归因于电化学反应提供的热量与蒸汽重整反应所需的热量之间的出色匹配。因此,它有望成为实际应用中的更好选择。

著录项

  • 来源
    《Journal of power sources》 |2009年第1期|69-78|共10页
  • 作者单位

    The Joint Graduate School of Energy and Environment. King Mongkut's University of Technology Thonburi, 126 Prachauthit Rd.. Bangmod, Tungkru, Bangkok 10140, Thailand;

    Department of Chemical Engineering. Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand;

    Department of Chemical Engineering. Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand;

    The Joint Graduate School of Energy and Environment. King Mongkut's University of Technology Thonburi, 126 Prachauthit Rd.. Bangmod, Tungkru, Bangkok 10140, Thailand;

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

    indirect internal reforming; solid oxide fuel cell; methane; methanol; ethanol; biogas;

    机译:间接内部改革;固体氧化物燃料电池甲烷甲醇乙醇沼气;
  • 入库时间 2022-08-18 00:25:51

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