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Estimation of kinetic parameters for imperata cylindrica flash pyrolysis

机译:白茅快速热解动力学参数的估计

摘要

Flash pyrolysis of biomass has been identified as a viable Thermochemical process of converting biomass to biooil (Tar). A new biomass (Imperata cylindrica) under consideration as all the characteristic of an energy crop, with the ability to burn even when green. It is abundantly available in South-East Asia, however, as farmers’ nightmare weed. In this paper a model was developed for flash pyrolysis of Imperata cylindrica in a batch transported bed reactor. The model developed was used to further understand the kinetic behavior of Imperata cylindrica pyrolysis as a lignocellulosic biomass. The kinetic analysis is based on a modified Broido-Shafizadeh kinetic mechanism and expressed as a first-order reaction of 6- lump model. The 8-paired kinetic parameters generated from the Arrhenius equation (frequency factor k0 and activation energy (....) were estimated by optimizing the kinetic model using the laboratory measured data and order of magnitude analysis. Using the estimated kinetic parameters the model predicts the biomass consumption and biooil production within the average deviation of ±10% of the experimental data.
机译:生物质的快速热解已被确定为将生物质转化为生物油的可行的热化学过程(Tar)。正在考虑将一种新的生物质(Imperata cylindrica)作为能源作物的所有特征,即使在绿色时也具有燃烧的能力。然而,由于农民的噩梦杂草,它在东南亚大量可用。在本文中,建立了一个模型,用于在分批运输床反应器中快速热裂解白茅(Imperata cylindrica)。开发的模型用于进一步了解Imperata cylindrica热解作为木质纤维素生物质的动力学行为。动力学分析基于改良的Broido-Shafizadeh动力学机理,并表示为6团模型的一级反应。通过使用实验室测量数据和量级分析优化动力学模型,可以估算由Arrhenius方程生成的8对动力学参数(频率因子k0和活化能(....))。生物量消耗和生物油产量在实验数据的±10%的平均偏差内。

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