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Enhancing the combustible properties of bamboo by torrefaction

机译:通过烘烤提高竹子的可燃性

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摘要

Bamboo has wide range of moisture content, low bulk energy density and is difficult to transport, handle, store and feed into existing combustion and gasification systems. Because of its important fuel characteristics such as low ash content, alkali index and heating value, bamboo is a promising energy crop for the future. The aim of this study was to evaluate the effects of torrefaction on the main energy properties of Bambusa vulgaris. Three different torrefaction temperatures were employed: 220, 250 and 280°C. The elemental characteristics of lignite and coal were compared to the torrefied bamboo. The characteristics of the biomass fuels tend toward those of low rank coals. Principal component analysis of FTIR data showed a clear separation between the samples by thermal treatment. The loadings plot indicated that the bamboo samples underwent chemical changes related to carbonyl groups, mostly present in hemicelluloses, and to aromatic groups present in lignin.
机译:竹子的水分含量范围广,堆能量密度低,并且难以运输,处理,储存和输入现有的燃烧和气化系统。由于其重要的燃料特性,例如低灰分含量,碱指数和热值,竹子是未来有希望的能源作物。这项研究的目的是评估焙干对寻常竹的主要能量特性的影响。使用三种不同的烘焙温度:220、250和280°C。将褐煤和煤的元素特征与烘焙竹子进行了比较。生物质燃料的特性趋向于低等级煤的特性。 FTIR数据的主成分分析表明,通过热处理可以使样品之间明显分离。装载图表明竹样品经历了与羰基相关的化学变化,羰基主要存在于半纤维素中,而木质素中则存在芳族基。

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