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Pyrolysis reaction models of waste tires: Application of Master-Plots method for energy conversion via devolatilization

机译:废轮胎的热解反应模型:Master-Plots方法在脱挥发分能量转化中的应用

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摘要

Land applied disposal of waste tires has far-reaching environmental, economic, and human health consequences. Pyrolysis represents a potential waste management solution, whereby the solid carbonaceous residue is heated in the absence of oxygen to produce liquid and gaseous fuels, and a solid char. The design of an efficient conversion unit requires information on the reaction kinetics of pyrolysis. This work is the first to probe the appropriate reaction model of waste tire pyrolysis. The average activation energy of pyrolysis was determined via iso-conversional methods over a mass fraction conversion range between 0.20 and 0.80 to be 162.8 ± 23.2 kJ mol~(-1). Using the Master Plots method, a reaction order of three was found to be the most suitable model to describe the pyrolytic decomposition. This suggests that the chemical reactions themselves (cracking, depolymerization, etc.), not diffusion or boundary layer interactions common with carbonaceous biomasses, are the rate-limiting steps in the pyrolytic decomposition of waste tires.
机译:废弃轮胎在土地上的处置具有深远的环境,经济和人类健康后果。热解代表了一种潜在的废物管理解决方案,其中固体碳质残留物在没有氧气的情况下被加热以产生液体和气体燃料以及固体炭。有效转化单元的设计需要有关热解反应动力学的信息。这项工作是第一个探索合适的废轮胎热解反应模型的工作。热解的平均活化能通过等转换方法在质量分数转换范围为0.20至0.80的范围内确定为162.8±23.2 kJ mol〜(-1)。使用Master Plots方法,发现三个反应阶数是描述热解分解的最合适模型。这表明化学反应本身(开裂,解聚等),而不是碳质生物质常见的扩散或边界层相互作用,是废轮胎热解过程中的限速步骤。

著录项

  • 来源
    《Waste Management》 |2017年第10期|405-411|共7页
  • 作者单位

    Ondokuz Mayis University, Faculty of Engineering, Chemical Engineering Department, Samsun, Turkey;

    Ondokuz Mayis University, Faculty of Engineering, Chemical Engineering Department, Samsun, Turkey;

    Boston University, Department of Mechanical Engineering and Division of Materials Science & Engineering, 110 Cummington Mall, Boston, MA 02215, USA;

    Ondokuz Mayis University, Faculty of Engineering, Chemical Engineering Department, Samsun, Turkey;

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

    Waste tire; Pyrolysis mechanism; Kinetics; TGA; Master-Plots;

    机译:废轮胎;热解机理;动力学;TGA;主图;

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