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Fluidized Bed Torrefaction of Commercial Wood Pellets: Process Performance and Solid Product Quality

机译:商品木丸流化床干燥:工艺性能和固体产品质量

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This paper reports an experimental study aimed at investigating the influence of fluidized bed torrefaction treatment on the quality of commercial wood pellets. In particular, an experimental program was performed, which allowed us to investigate, at a laboratory scale, the impact of the torrefaction temperature (200, 230, 250 degrees C) and the reaction time (7 and 15 min) on (a) the distribution and the composition of the main output products of the torrefaction process (torrefied solids, condensable volatiles, and permanent gases); (b) the quality of torrefied pellets; and (c) process performance in terms of mass and energy yields of the solid product. In particular, the quality of pellets was characterized in terms of apparent density, bulk density, calorific values, volumetric energy density, moisture uptake, swelling behavior, hardness (Shore D), and nonstandard durability index. Results suggest that light torrefaction (200 degrees C and 7-15 min) is the most suitable to ensure a sustainable production (84-85% mass yield and 94-95% energy yield) of high quality torrefied wood pellets (no swelling in water, about 27% decrease in the moisture uptake after 7 days of exposure in an environment at a high relative humidity of 80%, hardness and durability comparable to those of untreated wood pellets, only a 2-3% decrease in the volume energy density) in a downstream configuration (torrefaction after pelletization). The torrefaction treatment of wood pellets in a fluidized bed reactor has not been investigated so far; therefore, findings of this work can be useful to highlight potential advantages and drawbacks related to the use of such a technology in this specific application.
机译:本文报道了一项旨在研究流化床焙干处理对商品木屑质量的影响的实验研究。特别是,执行了一个实验程序,使我们能够在实验室规模下研究烘焙温度(200、230、250摄氏度)和反应时间(7和15分钟)对(a)样品的影响。焙干过程的主要输出产物的分布和组成(焙干的固体,可冷凝的挥发物和永久性气体); (b)烘焙过的颗粒的质量; (c)就固体产物的质量和能量产率而言的过程性能。特别地,粒料的质量通过表观密度,堆积密度,热值,体积能量密度,吸湿率,膨胀行为,硬度(邵氏D)和非标准耐久性指数来表征。结果表明,光烘烤(200摄氏度和7-15分钟)最适合于确保可持续生产(84-85%的质量产率和94-95%的能量产率)高质量的焙烤木材颗粒(在水中不溶胀) ,在相对湿度为80%的高环境中暴露7天后,吸水量减少了约27%,其硬度和耐用性与未经处理的木质颗粒相当,体积能量密度仅降低了2-3%)以下游形态(制粒后的折射)。迄今为止,尚未研究在流化床反应器中对木屑的焙干处理。因此,这项工作的发现有助于突出与在此特定应用中使用这种技术有关的潜在优缺点。

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