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A Thermochemical Conversion Study on the Combustion of Residue-Derived Fuels

机译:残留燃料燃烧的热化学转化研究

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摘要

Two different waste-derived by-products were examined and compared.Based on the thermog-ravimetric tests performed,it was proved that their decomposition occurs in two weight loss steps represented by two shoulders in the derivative thermogravimetric curves.The first shoulder is attributed to the devolatilisation of hemicellulose,cellulose and lignin and the second one to the plastic fraction of the waste.Similarities in the degradation behaviour were observed for both wastes,despite of their different origin.Increased plastic fractions resulted in slightly higher conversions and lower pyrolysis rates.Enhanced lignocellulosic fractions led to higher rates during combustion.The lignocellulosic fraction was increased proportionally to the inorganic residue that remained after combustion.A wide variation of weight losses was attained even in refuse-derived fuel(RDF)samples of the same origin,whilst stronger deviations were observed in the decomposition of the plastic fraction.The independent parallel,first-order,reactions model was elaborated for the kinetic analysis of the pyrolysis results.The thermal degradation of the RDF samples was modelled assuming four parallel reactions corresponding to the devolatilisation of cellulose,hemicellulose,lignin and plastics.Increased activation energies were calculated for the plastics fraction,whilst lignin presented the lowest contribution in the pyrolysis of the samples.Generally,both RDF samples presented similar kinetic constants despite their heterogeneity.
机译:检查并比较了两种不同的废物副产品。基于进行的热重分析,证明了它们的分解发生在衍生的热重曲线中两个肩部代表的两个失重步骤中。第一个肩部归因于半纤维素,纤维素和木质素的脱挥发分和第二个降解为废物的塑料级分。尽管来源不同,但两种废物的降解行为相似。塑料级分的增加导致转化率略高,热解速率较低。木质纤维素级分的增强导致燃烧过程中更高的速率。木质纤维素级分与燃烧后残留的无机残留物成比例增加。即使在相同来源的垃圾衍生燃料(RDF)样品中,重量损失也有很大变化,但强度更高在塑料部分的分解中观察到偏差。建立了平行,一级反应模型,对热解结果进行了动力学分析。对RDF样品的热降解进行了建模,并假设存在四个平行反应,分别对应于纤维素,半纤维素,木质素和塑料的脱挥发分。根据塑料含量计算,木质素在样品的热解中贡献最低。通常,两个RDF样品尽管具有异质性,但仍具有相似的动力学常数。

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