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Solar-Driven Coal Gasification in a Thermally Irradiated Packed-Bed Reactor

机译:热辐射填充床反应器中的太阳能驱动煤气化

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摘要

Coal gasification for high-quality synthesis gas production is considered using concentrated solar energy as the source of high-temperature process heat. The solar reactor consists of two cavities separated by a radiant emitter plate, with the upper one serving as the solar absorber and the lower one containing the reacting packed bed that shrinks as the reaction progresses. A 5 kW prototype reactor with an 8 cm depth, 14.3 cm diameter cylindrical bed was fabricated and tested in a high-flux solar furnace, subjected to solar flux concentrations up to 2600 suns and packed-bed temperatures up to 1440 K. The reactor is modeled by formulating the 1D unsteady energy conservation equation that couples conductive-radiative heat transfer with the reaction kinetics and solving it by the finite volume technique for a transient shrinking domain. The overall reaction rate was determined experimentally by thermogravimetry, while the effective thermal conductivity was determined experimentally in a radial heat flow oven. Model validation was accomplished in terms of bed temperatures, gasified mass, and bed shrink rates measured in solar experiments conducted with beech charcoal. Heat transfer through the bed proved to be the rate-controlling mechanism, indicating an ablation regime.
机译:考虑将聚光太阳能用作高温过程热源,以生产高质量合成气的煤气化技术。太阳能反应器由被辐射发射板隔开的两个空腔组成,上面的一个用作太阳能吸收器,下面的一个装有随着反应进行而收缩的反应填充床。在高通量太阳能炉中制造了一个深度为8厘米,直径为14.3厘米的5 kW原型反应堆,并在高通量太阳能炉中进行了测试,该反应堆的太阳通量密度高达2600太阳,填充床温度高达1440K。通过建立一维非稳态能量守恒方程进行建模,该方程将传导性辐射热传递与反应动力学耦合在一起,并通过有限体积技术对瞬态收缩域进行求解。总反应速率通过热重法通过实验确定,而有效导热率在径向热流炉中通过实验确定。根据床温,气化质量和在用山毛榉木炭进行的太阳能实验中测得的床收缩率完成了模型验证。通过床的传热被证明是速率控制的机制,表明了一种消融方式。

著录项

  • 来源
    《Energy & fuels》 |2008年第3期|p.2043-2052|共10页
  • 作者单位

    Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland;

  • 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 TK-;
  • 关键词

  • 入库时间 2022-08-18 00:42:35

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