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Effects of Reactor Design on the Torrefaction of Biomass

机译:反应堆设计对生物质脱除的影响

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摘要

Torrefied biomass is a green alternative to coal, and thus the interest in the torrefaction process is rising fast. Different manufacturers are offering different patented designs of torrefier with data on varying operating and process conditions each claiming their superiority over others. The choice of torrefaction technology lias become exceptionally difficult because of a near absence of a comparative assessment of different types of reactors on a common base. This work attempts to fill this important knowledge gap in torrefaction technology by reviewing available types of reactors, and comparing their torrefaction performance common basis and examining the commercial implication of reactor choice. After reviewing available patent and technologies offered, torrefiers are classified broadly under two generic groups: indirectly heated and directly heated. Four generic types of reactors, convective heating, fluidized bed, rotating drum and microwave reactor were studied in this research. Convective and fluidized beds have direct heating, rotating reactors has indirect heating while microwave involves a volumetric heating (a subgroup of direct heating) mechanism. A standard sample of biomass (25 mm diameter x 64 mm long poplar wood) was torrefied in each of these types of reactors under identical conditions. The mass yield, energy density and energy yield of the wood after torrefaction were measured and compared. Rotating drum achieved lowest mass yield but highest energy density. The difference between two direct heating, convective heating and fluidized beds was small. Microwave provided only localized torrefaction in this series of tests. Indirectly heated reactors might be suitable for a plant near the biomass source while directly heated plant would give better value at the user end.
机译:烘焙生物质是煤炭的绿色替代品,因此对烘焙过程的兴趣正在迅速提高。不同的制造商提供了不同的专利的烘培机设计,其中包含有关不同操作和工艺条件的数据,每一种都声称自己比其他产品具有优势。由于几乎没有在同一基础上对不同类型反应堆进行比较评估的结果,因此选择焙烧技术的别名变得异常困难。这项工作试图通过审查可用的反应堆类型,比较它们的烘烤性能通用基础并检查反应堆选择的商业意义,来弥补烘烤技术中的这一重要知识空白。在审查了可用的专利和所提供的技术之后,干式烘烤炉大致分为两大类:间接加热和直接加热。本研究研究了四种类型的反应堆,即对流加热,流化床,转鼓和微波反应堆。对流床和流化床具有直接加热,旋转反应器具有间接加热,而微波涉及体积加热(直接加热的一个子集)机制。在相同条件下,将这些生物质的标准样品(直径25毫米x长64毫米的杨木)烘干。测量并比较了焙烧后木材的质量产率,能量密度和能量产率。转鼓的产量最低,但能量密度最高。两种直接加热,对流加热和流化床之间的差异很小。在这一系列测试中,微波仅提供了局部烘焙。间接加热的反应堆可能适合于靠近生物质源的工厂,而直接加热的反应堆将在用户端提供更高的价值。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2012年第4期|041801.1-041801.11|共11页
  • 作者单位

    Mechanical Engineering Department, Dalhousie University,P.O. Box 1000, Halifax, Nova Scotia, B3J 3X4, Canada,Greenfield Research Incorporated, P.O. Box 25018, Halifax, Nova Scotia, B3M 4H4, Canada;

    Mechanical Engineering Department, Dalhousie University,P.O. Box 1000, Halifax, Nova Scotia, B3J 3X4, Canada;

    Greenfield Research Incorporated, P.O. Box 25018, Halifax, Nova Scotia, B3M 4H4, Canada,University of Guelph, University of Guelph, 50 Stone Road East, Guelph, ON, NIG 2W1, Canada;

  • 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

  • 入库时间 2022-08-18 00:29:35

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