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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Is torrefaction of polysaccharides-rich biomass equivalent to carbonization of lignin-rich biomass?
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Is torrefaction of polysaccharides-rich biomass equivalent to carbonization of lignin-rich biomass?

机译:是多糖的生物质的酸杂交等同于富含木质素的生物质的碳化吗?

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Waste biomass species such as lignin-rich hazelnut shell (HS) and polysaccharides-rich sunflower seed shell (SSS) were subjected to torrefaction at 300 degrees C and carbonization at 600 degrees C under nitrogen. The structural variations in torrefied and carbonized biomasses were compared. Also, the burning characteristics under dry air and pure oxygen (oxy-combustion) conditions were investigated. It was concluded that the effects of carbonization on HS are almost comparable with the effects of torrefaction on SSS in terms of devolatilization and deoxygenation potentials and the increases in carbon content and the heating value. Consequently, it can be proposed that torrefaction does not provide efficient devolatilization from the lignin-rich biomass while it is relatively more efficient for polysaccharides-rich biomass. Heat-induced variations in biomass led to significant changes in the burning characteristics under both burning conditions. That is, low temperature reactivity of biomass reduced considerably and the burning shifted to higher temperatures with very high burning rates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:废物生物质等木质素的榛子壳(HS)和富含多糖的向日葵种子壳(SSS)在300℃下进行烘焙,并在氮气下在600℃下碳化。比较了渗流和碳化生物质的结构变化。而且,研究了干燥空气和纯氧(氧燃烧)条件下的燃烧特性。得出结论是,碳化对HS的影响几乎与SSS在脱挥发化和脱氧电位方面的影响以及碳含量的增加和加热值增加。因此,可以提出烘焙不能从木质素富含木质素的生物质提供有效的脱挥发化,同时对多糖的生物质相对较高。生物质的热诱导变化导致燃烧条件下燃烧特性的显着变化。也就是说,生物质的低温反应性显着降低,燃烧转移到具有非常高的燃烧速率的较高温度。 (c)2015 Elsevier Ltd.保留所有权利。

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