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首页> 外文期刊>Journal of Thermal Analysis and Calorimetry >Co-firing of biomass with coals Part 2. Thermogravimetric kinetic analysis of co-combustion of fir (Abies bornmulleriana) wood with Beypazari lignite
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Co-firing of biomass with coals Part 2. Thermogravimetric kinetic analysis of co-combustion of fir (Abies bornmulleriana) wood with Beypazari lignite

机译:生物质与煤的共烧第2部分。杉木与Beypazari褐煤共燃烧的热重动力学分析

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摘要

The combustion of coal and coal/fir (Abies bornmulleriana) wood blends at the proper ratio (20, 40, 50 wt%) was investigated with thermogravimetric analysis (TG). The influence of biomass blends on thermal and kinetic behavior of coal was studied under non-isothermal conditions. The activation energy of the samples was evaluated with the Ozawa–Flynn–Wall model which compares the combustion of these biowastes with coal under non-isothermal conditions. Our research found that blending influences activation energy of coal; moreover, activation energy related to 50 wt% blend was more similar to pure wood combustion than to coal combustion. Therefore, the activation energy profile shifted from 80.6 to 169.3 kJ/mol. The average reaction order of the samples ranged from 0.13 to 0.35.
机译:用热重分析(TG)研究了煤和煤/冷杉(Abiesbornmulleriana)木材混合物以适当比例(20、40、50 wt%)的燃烧。在非等温条件下研究了生物质共混物对煤的热力学和动力学行为的影响。用Ozawa-Flynn-Wall模型评估了样品的活化能,该模型比较了这些生物废物与非等温条件下煤的燃烧。我们的研究发现,混合会影响煤的活化能。此外,与50 wt%掺混物有关的活化能与纯木材燃烧比与煤炭燃烧更相似。因此,活化能曲线从80.6变化到169.3kJ / mol。样品的平均反应顺序为0.13至0.35。

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