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STUDY OF DEVOLATILIZATION RATES OF PINE WOOD AND MASS LOSS OF WOOD PELLETS

机译:松木的挥发速率和木质颗粒的失重研究。

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The present work investigates the mass loss of fine wood biomass using a TA INSTRUMENTS SDT 2960 simultaneous DSC-TGA instrument. The samples of sawdust were classified according to the grain size (< 0.063, 0.063-0.125, 0.125-0.25, 0.25-0.5, 0.5-1, and > 1 mm) and the micro samples were tested with air at a constant heating rate of 10 K/min, from the room temperature up to 800°C. From the results the kinetic properties of the biomass fuel were determined using the 1st order Coats-Redfern equation. A transient thermal model of the fuel was implemented and was coupled with the biomass kinetic data in order to compute the mass loss of individual pellets and the results were compared with experimental data. The remaining mass, as fix carbon and ashes or unburnt substances, is approximately 3%. The kinetic parameters indicate that the biomass reactivity depends upon the particle size. The heating treatment of wood pellets at constant temperature and different time produced less nitrogen and more carbon and hydrogen for the short period of time.
机译:本工作使用TA INSTRUMENTS SDT 2960同步DSC-TGA仪器调查了细木生物质的质量损失。锯末的样品根据颗粒大小进行分类(<0.063、0.063-0.125、0.125-0.25、0.25-0.5、0.5-1和> 1 mm),并以恒定的加热速率用空气测试微量样品从室温到800°C的速度为10 K / min。根据结果​​,使用一阶Coats-Redfern方程确定了生物质燃料的动力学特性。实施了燃料的瞬态热模型,并将其与生物质动力学数据相结合,以计算单个颗粒的质量损失,并将结果与​​实验数据进行了比较。作为固定碳和灰烬或未燃物质的剩余质量约为3%。动力学参数表明生物质反应性取决于粒度。在恒定的温度和不同的时间对木屑颗粒进行加热处理,在短时间内产生较少的氮,并产生更多的碳和氢。

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