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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Characterization of Torrefied Biomass Pellets from Agricultural Residues for Solid Fuels
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Characterization of Torrefied Biomass Pellets from Agricultural Residues for Solid Fuels

机译:固体燃料农业残留物中滴灌生物质颗粒的特征

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摘要

Torrefaction and densification are suitable techniques for upgrading solid biomass materials. They can improve the energy properties of solid fuels. The objective of this research was to evaluate changes in physico-chemical properties of agricultural residues (corn-cobs and rice husks) during torrefaction. Physical properties of the torrefied biomass pellets were analysed. The results showed that increasing the torrefaction temperature and time resulted in reduced moisture and volatile matter content of corn-cobs and rice husks. At the same time, fixed carbon, ash content and heating values were increased. The heating values of both torrefied fuels were in the range of 14.9–16.9 MJ/kg, increased by about 16 to 22% from the raw biomass. The optimum treatment conditions were found to be in the range 200–250 ° C and 20 min. Physical properties of both torrefied pellet fuels were found to be enhanced, and closer to those required by the associated standard. The average bulk density and durability of torrefied pellets were between 1112 and 1226 kg/m 3 and 91 and 94%, respectively. The water resistance and compressive strength were in the range 89–92% and 140–156 kg/m 3 , respectively. The energy densities of corn-cob and rice husk torrefiled fuels were increased by 22.5 and 15.7%, respectively, when compared to their original biomass inputs. Torrefied pellet fuel is technically feasible and can be used as a substitute for fossil fuel in the future.
机译:烘焙和致密化是用于升级固体生物质材料的合适技术。它们可以改善固体燃料的能量性能。该研究的目的是评估烘焙过程中农业残留物(玉米饼和稻壳)的物理化学性质的变化。分析了雾化生物质粒料的物理性质。结果表明,增加烘焙温度和时间,导致玉米玉米棒和稻壳的水分和挥发性物质含量降低。同时,增加了固定碳,灰分含量和加热值。两种烘焙燃料的加热值在14.9-16.9mJ / kg的范围内,从原料生物量增加了约16至22%。最佳处理条件被发现在200-250℃和20分钟的范围内。发现两种泪液燃料的物理性质被发现增强,更接近相关标准所需的颗粒。渗流粒料的平均堆积密度和耐久性分别在1112和1226kg / m 3和91和94%之间。耐水性和抗压强度分别为89-92%和140-156 kg / m 3。与原始生物质输入相比,玉米棒和稻壳烘焙燃料的能量密度分别增加了22.5%和15.7%。 Torrefied Pellet燃料在技术上是可行的,可用作未来化石燃料的替代品。

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