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AUTOTHERMAL OPERATION OF A BIOMASS TORREFACTION PLANT

机译:生物质焙烧厂的自热操作

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Biomass torrefaction is a thermal pretreatment which takes place at a temperature between 200-300 °C in a non-oxidative environment. The process requires thermal energy for drying and torrefying the raw biomass. The amount of the required heat may vary depending on the biomass moisture content, operating temperature and residence time. The volatiles released during the torrefaction are usually burnt in a combustor to meet the heat requirement of the process. If the energy content of the volatiles is less than the thermal energy required for the process, the operation of the torrefaction unit is below the autothermal mode so an auxiliary fuel such as natural gas is burnt together with the volatiles.This paper investigates autothermal operation of a torrefaction unit which consists of a dryer, a torrefaction reactor, a combustor, and two heat exchangers. An experimentally validated process model is employed to identify a relation between the moisture content, torrefaction temperature, and residence time at autothermal operation. The model is capable of predicting the composition of volatiles and torrefied biomass, mass and energy yields, process heat requirement, and CO_2 emissions. The results are graphically presented allowing one to determine whether a torrefaction unit operates below or above the autothermal mode at given torrefaction temperature, residence time and moisture content. Furthermore, the effect of the main operating parameters on the carbon dioxide emissions of the torrefaction unit is discussed.
机译:生物质焙烧是一种在非氧化环境中于200-300°C之间的温度下进行的热处理。该过程需要热能来干燥和烘焙原始生物质。所需的热量可以根据生物质的水分含量,操作温度和停留时间而变化。焙干过程中释放的挥发物通常在燃烧器中燃烧以满足过程的热量需求。如果挥发物的能量含量少于该过程所需的热能,则干法装置的运行低于自热模式,因此天然气等辅助燃料会与挥发物一起燃烧。焙干单元,其由干燥器,焙干反应器,燃烧器和两个热交换器组成。使用经过实验验证的过程模型来确定水分含量,烘焙温度和自热运行时停留时间之间的关系。该模型能够预测挥发物和烘焙过的生物质的成分,质量和能量产量,过程所需热量以及CO_2排放量。结果以图形方式显示,可以确定在给定的焙烧温度,停留时间和水分含量下,焙烧单元是在自热模式之下还是在自热模式下运转。此外,还讨论了主要操作参数对烘焙装置二氧化碳排放的影响。

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