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Identification of reaction zones in a commercial Sasol-Lurgi fixed bed dry bottom gasifier operating on North Dakota lignite

机译:在北达科他州褐煤上运行的商业Sasol-Lurgi固定床干底气化炉中确定反应区

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摘要

The Sasol-Lurgi fixed bed dry bottom gasification technology has the biggest market share in the world with 101 gasifiers in operation. To be able to further improve the technology and also to optimise the operating plants, it is important that the fundamentals of the process are understood. The main objective of this study was to determine the reaction zones occurring in the Sasol-Lurgi fixed bed dry bottom (S-L FBDB) gasifier operating on North Dakota lignite. A Turn-Out sampling method and subsequent chemical analyses of the gasifier fuel bed samples was used to determine the reaction zones occurring in the commercial MK IV, S-L FBDB gasifier operating on North Dakota lignite. The reaction zones were further compared with the same reactor operating on bituminous coal. Based on the results obtained from this study it was found that about two thirds of the gasifier volume was used for drying and de-volatilising the lignite thus leaving only about a third of the reactor volume for gasification and combustion. Nonetheless, due to the high reactivity of the lignite, the char was consumed within a third of the remaining gasifier volume. Clear overlaps between the reaction zones were observed in the gasifiers thus confirming the gradual transition from one reaction zone to another as reported in literature. Due to the high moisture content in the lignite, the pyrolysis zone in the gasifiers operating on North Dakota lignite occurred lower/deeper in the gasifier fuel bed as compared to the same gasifier operating on South African bituminous coal from the Highveld coalfield. All the other reaction zones in the gasifier operating on bituminous coal were also higher in the bed compared to the lignite operation. This can therefore explain the higher gas outlet temperatures for the S-L FBDB gasifiers operating on higher rank coals when compared to the gasifiers operating on lignite. The fact that the entire reactor volume was utilized for drying, de-volatilisation, gasification and combustion with carbon conversion of >98% makes the S-L FBDB gasifier very suitable for lignite gasification.
机译:Sasol-Lurgi固定床干底气化技术拥有101台气化炉,在全球拥有最大的市场份额。为了能够进一步改善技术并优化运行工厂,了解过程的基础非常重要。这项研究的主要目的是确定在北达科他州褐煤上运行的Sasol-Lurgi固定床干底(S-L FBDB)气化炉中发生的反应区。气化炉燃料床样品的转出取样法和随后的化学分析用于确定在北达科他州褐煤上运行的商用MK IV,S-L FBDB气化炉中发生的反应区。将该反应区与在烟煤上运行的同一反应器进行了进一步比较。基于从该研究获得的结果,发现气化炉体积的约三分之二用于褐煤的干燥和脱挥发分,因此仅留下反应器体积的约三分之一用于气化和燃烧。尽管如此,由于褐煤的高反应性,焦炭在剩余气化炉容积的三分之一内被消耗。在气化炉中观察到反应区之间明显的重叠,从而证实了从文献中报道的从一个反应区到另一个反应区的逐渐过渡。由于褐煤中的高水分含量,与在Highveld煤田中使用南非烟煤的同一气化炉相比,在北达科他州褐煤运行的气化炉的热解区在气化炉燃料床中发生的位置较低/较深。与褐煤操作相比,气化炉中使用烟煤运行的所有其他反应区的床层也更高。因此,这可以解释与在褐煤上运行的气化炉相比,在更高等级煤上运行的S-L FBDB气化炉的出气温度更高。整个反应器容积都用于干燥,脱挥发分,气化和燃烧,且碳转化率> 98%,这使得S-L FBDB气化炉非常适合褐煤气化。

著录项

  • 来源
    《Fuel》 |2011年第1期|p.167-173|共7页
  • 作者单位

    Sasol Technology (Pty) Ltd., Box I, Sasolburg 1947, South Africa;

    Sasol Technology (Pty) Ltd., Box I, Sasolburg 1947, South Africa;

    School of Chemical and Minerals Engineering, North West University, Potchefstroom 2520, South Africa;

    Dakota Gasification Company, 420 County Road, 26, Beulah, North Dakota 58523-9400, USA;

  • 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

    fixed bed dry bottom gasification; lignite; reaction zones;

    机译:固定床干底气化;褐煤;反应区;

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