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Co-gasification of coal and wood in a dual fluidized bed gasifier

机译:双流化床气化炉中煤和木材的共气化

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摘要

In the last decade the reduction of CO_2 emissions from fossil fuels became a worldwide topic. Co-gasification of coal and wood provides an opportunity to combine the advantages of the well-researched usage of fossil fuels such as coal with CO_2-neutral biomass. Gasification itself is a technology with many advantages. The producer gas can be used in many ways; for electric power generation in a gas engine or gas turbine, for Fischer-Tropsch synthesis of liquid fuels and also for production of gaseous products such as synthetic natural gas (bio SNG). Moreover, the use of the producer gas in fuel cells is under investigation. The mixture of coal and wood leads to the opportunity to choose the gas composition as best befits the desired process. Within this study the focus of investigation was of gasification of coal and wood in various ratios and the resulting changes in producer gas composition. Co-gasification of coal and wood leads to linear producer gas composition changes with linear changing load ratios (coal/wood). Hydrogen concentrations rise with increasing coal ratio, while CO concentrations decrease. Due to the lower sulfur and nitrogen content of wood, levels of the impurities NH_3 and H_2S in the producer gas fall with decreasing coal ratio. It is also shown that the majority of sulfur is released in the gasification zone and, therefore, no further cleaning of the flue gas is necessary. All mixture ratios, from 100 energy% to 0 energy% coal, performed well in the 100 kW dual fluidized bed gasifier. Although the gasifier was originally designed for wood, an addition of coal as fuel in industrial sized plants based on the same technology should pose no problems.
机译:在过去的十年中,减少化石燃料产生的CO_2排放已成为世界范围的话题。煤和木材的共气化提供了一个机会,可以将经过充分研究的化石燃料(例如煤)与CO_2中性生物质的使用结合起来。气化本身是一项具有许多优势的技术。产生气可以有多种用途。用于燃气发动机或燃气轮机中的发电,用于费-托合成液体燃料,还用于生产气态产品,例如合成天然气(bio SNG)。此外,正在研究在燃料电池中使用产生器气体。煤和木材的混合物导致有机会选择最适合所需工艺的气体成分。在这项研究中,研究的重点是各种比例的煤炭和木材的气化以及生产气体成分的变化。煤和木材的共气化导致线性的生产气成分随负荷比(煤/木材)的线性变化而变化。氢气浓度随煤比的增加而增加,而CO浓度则下降。由于木材中较低的硫和氮含量,随着煤比的降低,生产气中杂质NH_3和H_2S的含量下降。还显示出大部分硫在气化区中释放,因此不需要进一步净化烟道气。在100 kW双流化床气化炉中,所有混合比(从100能源%到0能源%的煤)均表现良好。尽管气化炉最初是为木材设计的,但是在基于相同技术的工业规模工厂中添加煤作为燃料应该不会造成任何问题。

著录项

  • 来源
    《Fuel》 |2011年第7期|p.2404-2412|共9页
  • 作者单位

    Vienna University of Technology (VUT), Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    Vienna University of Technology (VUT), Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

    Vienna University of Technology (VUT), Institute of Chemical Engineering, Getreidemarkt 9/166, 1060 Vienna, Austria;

  • 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

    Co-gasification; biomass; Tar; NH_3; H_2S;

    机译:共气化;生物质柏油;NH_3;H_2S;

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