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Mathematical Modeling of Fast Biomass Pyrolysis and Bio-Oil Formation. Note I: Kinetic Mechanism of Biomass Pyrolysis

机译:快速生物质热解和生物油形成的数学建模。 注意I:生物质热解的动力学机制

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This paper discusses the research activities done at Politecnico di Milano in the field of the detailed kinetic modeling of pyrolysis and combustion of biomass and bio-oil formation. Different critical steps are involved in this multicomponent, multiphase and multiscale problem. The first complexity relies on biomass characterization with the selection of reference species: cellulose, hemicellulose, lignins, and extractives. Fast pyrolysis involves kinetic mechanisms, first in the solid phase for biomass pyrolysis, then in gas -phase for secondary reactions of released products. These mechanisms involve large number of species and reactions, which make computations expensive. They need to be simplified, while still maintaining their description capability. Lumping procedures are extensively applied to allow the development of the overall model. Multistep pyrolysis mechanisms of reference species are discussed in this Note, with several comparisons with experimental data. A peculiarity of the model is its ability to provide detailed compositions of pyrolysis products and solid residue. Catalytic effect of ash on pyrolysis products is also discussed. A companion paper will discuss the successive or secondary gas phase reactions of pyrolysis products, together with the heterogeneous reactions of residual char. Finally, the modeling of biooil formation requires a comprehensive description of the coupling of kinetic and transport processes, both at the particle and the reactor scale.
机译:本文讨论了在生物质和生物油形成的热解和燃烧的详细动力学建模领域的PoliteCnico di Milano进行了研究活动。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选择参考物种的生物量表征:纤维素,半纤维素,木质素和提取物。快速热解涉及动力学机制,首先在生物质热解中的固相中,然后在气体相对释放产物的二次反应中。这些机制涉及大量物种和反应,使得计算昂贵。他们需要简化,同时仍然保持其描述能力。扩大程序被广泛应用于允许开发整体模型。在本说明中讨论了参考物种的多步热解机制,具有几种与实验数据的比较。该模型的特殊性是其能够提供热解产物和固体残余物的详细组合物。还讨论了灰分对热解产物的催化作用。伴侣纸将讨论热解产品的连续或二级气相反应,以及残留炭的异质反应。最后,生物磁质形成的建模需要在颗粒和反应器刻度下综合描述动力学和运输过程的偶联。

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