首页> 外文期刊>Environmental progress & sustainable energy >Effect of Torrefaction Temperature on Lignin Distribution of Larix kaempferi C. and Liriodendron tulipifera L. Cubes and the Impact of Binder on Durability of Pellets Fabricated with the Torrefied Cubes
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Effect of Torrefaction Temperature on Lignin Distribution of Larix kaempferi C. and Liriodendron tulipifera L. Cubes and the Impact of Binder on Durability of Pellets Fabricated with the Torrefied Cubes

机译:焙烧温度对华北落叶松和北美鹅掌Cu立方体木质素分布的影响以及粘合剂对焙烧立方体颗粒的耐久性的影响

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Larch (LAR) and yellow poplar (YP) cubes were torrefied at 180, 220 and 260 degrees C for 50 min to investigate the effect of torrefaction temperature on chemical composition, fuel properties and pelletability. When increasing the torrefaction temperature from 180 to 220 degrees C, lignin content of torrefied LAR and YP increased from 28 to 34% and from 21 to 23%, respectively. Xylose contents of LAR and YP decreased to 11% at the torefaction temperature of 260 degrees C. The thermal degradation of xylose by the torrefaction treatment has a significant impact on increasing the ash content, higher heating value and weight loss of the torrefied LAR and YP. When the lignin distribution of untreated and 180 degrees C-torrefied cubes were measured quantitatively by the microscopic analysis of SEM-EDX, the amount of lignin existing on the radial-sectional areas of LAR and YP increased from 7.89 to 18.84% and from 6.37 to 17.71%, respectively. Durability of pellets fabricated with torrefied LAR and YP cubes decreased with the increase of torrefaction temperature. By the adjustment of a moisture content for the torrefied particles, durability of torrefied LAR pellets improved by 8-11% but that of YP decreased by 2-21%. Addition of 2 wt% starch, lignin and protein as a binder to 180 degrees C- and 220 degrees C-torrefied LAR and YP affected the increase of pellets durability. Accordingly, it can be concluded that the addition of binder or moisture is needed to produce durable pellets made with torrefied LAR and YP while accounting for costs associated with the binders. (c) 2019 American Institute of Chemical Engineers Environ Prog, 38:e13146, 2019
机译:将落叶松(LAR)和黄杨(YP)立方体在180、220和260摄氏度下烘焙50分钟,以研究烘焙温度对化学成分,燃料性质和可造粒性的影响。当将烘焙温度从180摄氏度提高到220摄氏度时,烘焙的LAR和YP的木质素含量分别从28%增至34%和从21%增至23%。在260℃的烘烤温度下LAR和YP的木糖含量降低到11%。通过烘烤处理产生的木糖热降解对灰化的LAR和YP的灰分含量增加,较高的热值和重量损失具有重要影响。 。通过SEM-EDX的显微镜分析定量测量未处理的和180°C焙烧的立方体的木质素分布时,LAR和YP的径向截面积上存在的木质素的数量从7.89%增加到18.84%,从6.37%增加到分别为17.71%。焙烧后的LAR和YP立方体制造的颗粒的耐用性随焙烧温度的升高而降低。通过调整烘焙颗粒的水分含量,烘焙LAR丸的耐久性提高了8-11%,而YP的耐久性降低了2-21%。在180°C和220°C焙干的LAR和YP中添加2 wt%的淀粉,木质素和蛋白质作为粘合剂会影响颗粒耐久性的提高。因此,可以得出结论,在考虑与粘合剂相关的成本的同时,需要添加粘合剂或水分以生产用焙烧的LAR和YP制成的耐用粒料。 (c)2019美国化学工程师学会Environ Prog,38:e13146,2019

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