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首页> 外文期刊>Biomass & bioenergy >Mathematical modelling of a continuous biomass torrefaction reactor: TORSPYD~™ column
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Mathematical modelling of a continuous biomass torrefaction reactor: TORSPYD~™ column

机译:连续生物质干馏反应器的数学模型:TORSPYD〜™色谱柱

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摘要

Torrefaction is a soft thermal process usually applied to cocoa or coffee beans to obtain the Maillard reaction to produce aromatics and enhance the flavour. In the case of biomass the main interest of torrefaction it is to break the fibers. To do so, Thermya company has developed and patented a biomass torrefaction/depolymerisation process called TORSPYD?. It is a homogeneous "soft" thermal process that takes place in an inert atmosphere. The process progressively eliminates the biomass water content transforms a portion of the biomass organic matter and breaks the biomass structure by depolymer-isation of the fibers. This produces a high performance solid fuel, called Biocoal, which offers a range of benefits over and above that of normal biomass fuel. To develop such a process, this company has developed two main tools:- a continuous torrefaction laboratory pilot with a capacity to produce 3 — 8 kg/h of torrefied biomass;- a mathematical model dedicated to the design and optimisation of the TORSPYD reactor.The mathematical model is able to describe the chemical and physical processes that take place in the torrefaction column at two different scales, namely: the particle, and the surrounding gas. The model enables the gas temperature profiles inside the column to be predicted, and the results of the model are then validated through experiment in the laboratory pilot. The model also allows us to estimate the thermal power necessary to torrefy any type of biomass for a given moisture content.
机译:烘焙是一种软热过程,通常应用于可可或咖啡豆,以获得美拉德反应,从而产生芳香剂并增强风味。就生物质而言,烘焙的主要目的是破坏纤维。为此,Thermya公司开发了一种名为TORSPYD?的生物质烘焙/解聚工艺并申请了专利。这是在惰性气氛中发生的均匀的“软”热处理。该过程通过纤维解聚逐渐消除了生物质水含量,从而转化了一部分生物质有机物并破坏了生物质结构。这产生了一种称为Biocoal的高性能固体燃料,它具有比普通生物质燃料更大的益处。为了开发这种方法,该公司开发了两个主要工具:-连续的焙烧实验室飞行员,能够生产3-8 kg / h的焙烤生物质;-专门用于TORSPYD反应器设计和优化的数学模型。该数学模型能够描述在焙烧塔中发生的两种不同比例的化学和物理过程,即颗粒和周围的气体。该模型可以预测塔内的气体温度曲线,然后通过实验室中的实验验证模型的结果。该模型还允许我们估计在给定的水分含量下焙干任何类型生物质所需的热功率。

著录项

  • 来源
    《Biomass & bioenergy 》 |2011年第8期| p.3481-3495| 共15页
  • 作者单位

    Thermya, 1 rue Nicolas Appert, 33140 Villenave D'ornon, France;

    rnThermya, 1 rue Nicolas Appert, 33140 Villenave D'ornon, France;

    rnThermya, 1 rue Nicolas Appert, 33140 Villenave D'ornon, France;

    rnThermya, 1 rue Nicolas Appert, 33140 Villenave D'ornon, France;

  • 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

    Modelling; Torrefaction; Wood; Biomass; Depolymerisation; Co-Combustion;

    机译:建模;折射;木材;生物质;解聚;共燃;

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