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Oxytree Pruned Biomass Torrefaction: Mathematical Models of the Influence of Temperature and Residence Time on Fuel Properties Improvement

机译:Oxytree修剪的生物质烘焙:温度和停留时间对燃料性能改善影响的数学模型

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摘要

Biowaste generated in the process of Oxytree cultivation and logging represents a potential source of energy. Torrefaction (a.k.a. low-temperature pyrolysis) is one of the methods proposed for the valorization of woody biomass. Still, energy is required for the torrefaction process during which the raw biomass becomes torrefied biomass with fuel properties similar to those of lignite coal. In this work, models describing the influence of torrefaction temperature and residence time on the resulting fuel properties (mass and energy yields, energy densification ratio, organic matter and ash content, combustible parts, lower and higher heating values, CHONS content, H:C and O:C ratios) were proposed according to the Akaike criterion. The degree of the models’ parameters matching the raw data expressed as the determination coefficient (R2) ranged from 0.52 to 0.92. Each model parameter was statistically significant (p < 0.05). Estimations of the value and quantity of the produced torrefied biomass from 1 Mg of biomass residues were made based on two models and a set of simple assumptions. The value of torrefied biomass (€123.4·Mg−1) was estimated based on the price of commercially available coal fuel and its lower heating value (LHV) for biomass moisture content of 50%, torrefaction for 20 min at 200 °C. This research could be useful to inform techno-economic analyses and decision-making process pertaining to the valorization of pruned biomass residues.
机译:在Oxytree种植和伐木过程中产生的生物废物是潜在的能源。烘焙(也称为低温热解)是提议的木质生物量增值方法之一。尽管如此,在焙干过程中仍需要能量,在此过程中,原始生物质变成了焙烧过的生物质,燃料性质类似于褐煤。在这项工作中,描述了焙干温度和停留时间对所得燃料特性(质量和能量产率,能量致密化比,有机物和灰分,可燃物,较低和较高的热值,CHONS含量,H:C)的影响的模型和O:C比率)是根据Akaike准则提出的。模型参数与原始数据相匹配的程度表示为确定系数(R 2 ),范围为0.52至0.92。每个模型参数均具有统计学意义(p <0.05)。基于两个模型和一组简单的假设,估算了从1 Mg生物质残渣中生产的烘焙过的生物质的价值和数量。烘焙生物质的价值(€123.4·Mg −1 )是基于市售煤燃料的价格及其较低的热值(LHV)(生物质水分含量为50%,烘焙20年后的值)估算的分钟在200°C。这项研究对于与修剪的生物质残渣的增值有关的技术经济分析和决策过程可能有用。

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