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Mathematical Modeling of Fast Biomass Pyrolysis and Bio-Oil Formation. Note II: Secondary Gas-Phase Reactions and Bio-Oil Formation

机译:快速生物质热解和生物油形成的数学建模。 注:二级气相反应和生物油形成

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This paper summarizes the research activities done at Politecnico di Milano in the field of the detailed kinetic modeling of fast pyrolysis of biomass to produce biooil. Note I of this work already discussed biomass characterization and the multistep pyrolysis mechanisms of reference species. The model is able to provide a detailed composition of pyrolysis products and char residue. Different critical steps are involved in this multicomponent, multiphase and multiscale problem. The first complexity relies in biomass characterization. Then, fast pyrolysis process involves detailed kinetic mechanisms, first in the solid phase for the biomass pyrolysis, then in the gas -phase for the secondary reactions of released products. The complexity of these kinetic mechanisms requires strong simplifications, thus chemical lumping procedures are extensively applied. Successive or secondary gas phase reactions of gas and tar components released during the pyrolysis process complement the kinetic model, together with the heterogeneous reactions of residual char. The modeling of fast pyrolysis process requires a comprehensive description of the coupled transport and kinetic processes, both at the particle and the reactor scale. A few examples and comparisons with experimental data validate the reliability of the overall model. Finally, the composition and physical properties of the pyrolysis bio-oil are also discussed, with emphasis on combustion and pollutant emissions.
机译:本文总结了在PoliteCnico di Milano在生物质快速热解的田间造型中完成的研究活动,以产生生物蛋清。注意这项工作的I已经讨论了参考物种的生物量表征和多学期热解机制。该模型能够提供热解产物和炭残余物的详细组合物。此多组分,多阶段和多尺度问题涉及不同的关键步骤。第一种复杂性依赖于生物质表征。然后,快速热解过程涉及详细的动力学机制,首先在生物质热解中的固相中,然后在气体相 - 释放产物的二次反应中。这些动力学机构的复杂性需要强的简化,因此广泛地应用了化学物料程序。在热解过程中释放的气体和焦油成分的连续或次要气相反应补充动力学模型,以及残留炭的异质反应。快速热解过程的建模需要在颗粒和反应器刻度下综合描述偶联的传输和动力学过程。有一些实验数据的示例和比较验证了整体模型的可靠性。最后,还讨论了热解生物油的组成和物理性质,重点是燃烧和污染物排放。

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