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首页> 外文期刊>Energy Conversion & Management >Energetic and exergetic study of the pyrolysis of lignocellulosic biomasses, cellulose, hemicellulose and lignin
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Energetic and exergetic study of the pyrolysis of lignocellulosic biomasses, cellulose, hemicellulose and lignin

机译:精力充沛的木质纤维素生物质,纤维素,半纤维素和木质素热解的研究

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摘要

Energy and exergy analyses were performed to evaluate the pyrolysis of the lignocellulosic biomasses, beech wood and flax shives, and the pyrolysis of biomass principal compounds (cellulose, hemicelluloses and lignin) as well. The reaction took place in a semi-continuous reactor at 500 degrees C within an intermediary pyrolysis regime. Lignin showed the lowest heat for pyrolysis, with 0.86 MJ/kg Raw material, followed by cellulose (1.21 MJ/kg(Raw material)) and hemicellulose (1.43 MJ/kg(Raw material)). The heat for pyrolysis for the pseudo-components was inferior to those obtained for the biomasses. Beech wood heat for pyrolysis was 1.97 MJ/kg(Biomass) and that for flax shives was 2.2 MJ/kg(Biomass). The thermal behavior of the biomasses was similar to that of hemicellulose and cellulose, as the bio-oils seemed to have closest energetic and exergetic distribution of chemical families as compared to the lignin bio-oil. For all pyrolysis tests, bio-oil represented the stream with lowest anergy. As values were between 0.08 and 0.57 MJ/kg(Bio-oil). Pyrolysis of the pseudo-components showed lower exergy destruction rate than pyrolysis of the biomasses; this can be a result of the competition of thermal reactions between cellulose, hemicellulose and lignin within the biomass during pyrolysis. Meanwhile, less exergy was destroyed in flax shives pyrolysis (2.00 MJ/kg(Biomass)) than beech wood pyrolysis (2.1 MJ/kg(Biomass)).
机译:进行能量和漏洞分析来评估木质纤维素生物量,山毛榉木和亚麻灯的热解,以及生物质主要化合物(纤维素,半纤维素和木质素)的热解。该反应在中间热解状态下在500℃下在半连续反应器中进行。木质素显示热解的最低热量,具有0.86mJ / kg原料,其次是纤维素(1.21mJ / kg(原料))和半纤维素(1.43mJ / kg(原料))。用于伪组分的热解热的热量差不多与生物量获得的那些。热解的山毛榉木质热量为1.97mJ / kg(生物量),亚麻灯是2.2mJ / kg(生物量)。生物量的热行为与半纤维素和纤维素的热行为类似,因为与木质素生物油相比,生物油似乎具有最接近的化学家族的能量和锻炼分布。对于所有热解试验,生物油代表了最低的声音的流。作为值的值介于0.08和0.57mJ / kg(生物油)之间。伪组分的热解显示出低于生物量的热解的低渗破坏率;这可能是在热解期间纤维素,半纤维素和木质素内的热反应竞争的结果。同时,在亚麻灯溶解(2.00MJ / kg(生物质))比山毛榉木热解(2.1MJ / kg(生物量)),少漏水

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