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Investigation of kinetic compensation effect in lignocellulosic biomass torrefaction: Kinetic and thermodynamic analyses

机译:木质纤维素生物量托料中动力学补偿效应的研究:动力学和热力学分析

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摘要

The kinetic compensation effect between the activation energy and the pre-exponential factor has extensively existed in the thermochemical conversion processes of lignocellulosic biomass. The research on the kinetic compensation effect in lignocellulosic biomass torrefaction has been insufficient yet. The torrefaction of the pinewood sample was experimentally investigated by thermogravimetric analysis (TGA) at five isothermal temperatures of 220, 250, 265, 280 and 295 °C. The reaction order model was used to analyze the isothermal torrefaction kinetics of lignocellulosic biomass, and the results showed that many sets of activation energy and pre-exponential factor could describe the experimental data at each temperature equally well and they excellently satisfied the kinetic compensation effect relationship. The linear regression lines of the kinetic compensation effect points at different temperatures intersected at one point, whose values corresponded to the obtained optimal kinetic parameters. A kinetic-compensation-effect-based method was developed and verified to determine the kinetic parameters of isothermal biomass torrefaction. Based on the optimal kinetic parameters, the thermodynamic parameters (including Gibbs free energy, enthalpy, and entropy) of biomass torrefaction processes at various temperatures were calculated and analyzed.
机译:在木质纤维素生物质的热化学转化过程中,活化能量和预指数因子之间的动力补偿效应广泛存在。对木质纤维素生物质烘焙中的动力补偿效果的研究尚未充分。通过热量分析(TGA)在220,250,265,280和295℃的五等温度温度下通过热重分析(TGA)进行实验研究了松木样品的烘焙。反应阶模型用于分析木质纤维素生物质的等温渗流动力学,结果表明,许多激活能量和预指数因子可以同样地描述每个温度的实验数据,并且他们非常满足动力学补偿效果关系。动力学补偿效果的线性回归线在一个点相交的不同温度下,其值与所获得的最佳动力学参数相对应。开发并验证了基于动力学补偿效应的方法,以确定等温生物量Torrefaction的动力学参数。基于最佳动力学参数,计算并分析了各种温度下生物质烘焙过程的热力学参数(包括Gibbs自由能,焓和熵)。

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  • 来源
    《Energy 》 |2020年第15期| 118290.1-118290.9| 共9页
  • 作者单位

    Biomass Energy Engineering Research Center School of Agriculture and Biology Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 People's Republic of China;

    Biomass Energy Engineering Research Center School of Agriculture and Biology Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 People's Republic of China;

    College of Chemical Engineering Nanjing Forestry University 159 Longpan Road Nanjing 210037 People's Republic of China;

    School of Chemical Engineering and Energy Technology Dongguan University of Technology 1 Daxue Road Songshan Lake Dongguan 523808 Guangdong Province People's Republic of China;

    Energy & Bioproducts Research Institute (EBRI) School of Engineering & Applied Science Aston University Aston Triangle Birmingham B4 7ET United Kingdom;

    College of Chemical Engineering Nanjing Forestry University 159 Longpan Road Nanjing 210037 People's Republic of China;

    Discipline of Chemical Engineering Western Australian School of Mines: Minerals Energy and Chemical Engineering Curtin University GPO Box U1987 Perth WA 6845 Australia;

    Biomass Energy Engineering Research Center School of Agriculture and Biology Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass torrefaction; Isothermal kinetics; Kinetic compensation effect; Activation energy; Thermodynamic analysis;

    机译:生物量烘焙;等温动力学;动力学补偿效果;活化能;热力学分析;

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