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Pilot scale steam-oxygen CFB gasification of commercial torrefied wood pellets. The effect of torrefaction on the gasification performance

机译:商用烘焙木颗粒的中试蒸汽-氧气CFB气化。焙烧对气化性能的影响

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摘要

Torrefaction is a promising biomass upgrading technology as it makes biomass more coal alike and offers benefits in logistics and handling operations. Gasification is an attractive thermochemical conversion technology due to its flexibility in the product gas end-uses. Therefore, it is valuable to investigate whether additional benefits are foreseen when torrefaction is coupled with gasification. Therefore, two commercial torrefied wood fuels and their parent materials are gasified at 800-850 °C under atmospheric steam-oxygen circulating fluidized bed gasification conditions and magnesite as bed material. The torrefied feedstocks consisted of wood residues torrefied by Topell at 250 °C (Topell black), and mixed wood and wood residues torrefied by Torrcoal at 300 °C (Torrcoal black). The gasification results show that torrefaction resulted in an increased gas quality, as it yielded higher H_2 and CO contents, a decrease of the CO_2 content, increased gas yield and a significant decrease of the total tar content for both feedstocks. For the Torrcoal samples, torrefaction resulted in a decrease in the carbon conversion efficiency (CCE). In addition, the cold gas efficiency (CGE) remained approximately the same due to the increase in the H_2 and CO contents. The Topell samples showed an increase in the CCE and CGE upon torrefaction, but this could be attributed to a significant grinding in the screw feeder. It is generally concluded that both torrefied fuels may offer benefits as a feedstock for steam-oxygen blown circulating fluidized bed gasification, in particular in terms of gas quality and yield.
机译:烘焙是一种有前途的生物质提质技术,因为它使生物质更像煤炭,并在物流和装卸操作中受益。气化是一种有吸引力的热化学转化技术,因为它在产品气的最终用途中具有灵活性。因此,研究干法与气化结合时是否可以预见到更多的好处是很有价值的。因此,在大气蒸汽-氧气循环流化床气化条件下,在800-850°C的温度下将两种市售的焙烧木材燃料及其母体材料气化,并将菱镁矿作为床材料。烘焙原料包括由Topell在250°C烘焙的木材残留物(Topell黑色),以及由Torcoal在300°C烘焙的木材残留物和混合木材残渣(Torrcoal黑色)。气化结果表明,焙干导致气体质量提高,因为这两种原料产生的H_2和CO含量更高,CO_2含量降低,气体产率提高且总焦油含量显着降低。对于Torrcoal样品,焙烧导致碳转化效率(CCE)降低。此外,由于H_2和CO含量的增加,冷气效率(CGE)保持大致相同。 Topell样品在焙烧时显示CCE和CGE升高,但这可能归因于螺旋进料器中的大量研磨。通常得出的结论是,两种焙烧的燃料都可以作为蒸汽-氧气吹入的循环流化床气化的原料,特别是在气体质量和产率方面,具有优势。

著录项

  • 来源
    《Biomass & bioenergy》 |2017年第10期|411-420|共10页
  • 作者单位

    Delft University of Technology, Process and Energy Laboratory, Leeghwaterstraat 39, Delft, Netherlands;

    Delft University of Technology, Process and Energy Laboratory, Leeghwaterstraat 39, Delft, Netherlands;

    University of Teramo, Department of Food Science, Faculty of Bioscience, Agrofood and Environmental Technology, Via C.Lerici 1, Mosciano. S. Angelo, TE, Italy;

    Delft University of Technology, Process and Energy Laboratory, Leeghwaterstraat 39, Delft, Netherlands,Faculty of Mathematics and Natural Sciences, Chemical Technology, Engineering and Technology Institute of Groningen, Nijenborgh 4, Groningen, Netherlands;

    Delft University of Technology, Process and Energy Laboratory, Leeghwaterstraat 39, Delft, Netherlands,Energy research Centre of the Netherlands (ECN), P.O. Box 1, Petten, Netherlands;

  • 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

    Circulating fluidized bed; Gasification; Magnesite; Tar; Torrefaction; Wood;

    机译:循环流化床;气化;菱镁矿;柏油;烘焙;木;

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