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Distribution of activation energy model applied to the rapid pyrolysis of coal blends

机译:活化能模型在煤共混物快速热解中的应用

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A multiple reaction model (MRM) was used to characterize the kinetics of pyrolysis of single coals and binary blends; the MRM represents the kinetics through a continuous distribution of the activation energies of the individual reactions (DAEM). Kinetic parameters were assessed from experiments performed in a drop-tube reactor at high temperatures (1000-1300 ℃) and low residence times (60-320 ms). Results are given for three single coals and two binary blends. Volatile yields are generally greater than the ASTM standard values due to fewer secondary reactions under the experimental conditions. The proposed model satisfactorily reproduces devolatilization curves as a function of activation energy distribution and a parameter that depends on the liptinite, vitrinite and ash content of the coal or blend. A defined "Pyrolysis Yield Index" (PYI) that combines the maceral composition and ash content, appears to correlate well with a parameter of the kinetic model. Blends constituted by petrographically similar coals show no significant deviation from the expected weighted average of the single coals.
机译:用多重反应模型(MRM)表征了单一煤和二元混合物的热解动力学。 MRM通过单个反应(DAEM)的活化能的连续分布表示动力学。在高温(1000-1300℃)和低停留时间(60-320 ms)下,在滴管式反应器中进行的实验评估了动力学参数。给出了三种单一煤和两种二元混合物的结果。由于在实验条件下较少的二次反应,挥发物收率通常大于ASTM标准值。所提出的模型令人满意地再现了脱挥发分曲线,该曲线是活化能分布的函数以及取决于煤或掺合物的锂皂石,镜质石和灰分含量的参数。定义的“热解产率指数”(PYI)结合了宏观组成和灰分含量,似乎与动力学模型的参数很好地相关。由岩相相似的煤组成的掺合物与预期的单一煤加权平均无明显差异。

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