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Biomass pyrolysis kinetics: A comparative critical review with relevant agricultural residue case studies

机译:生物质热解动力学:具有相关农业残留案例研究的比较关键性评论

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Biomass pyrolysis is a fundamental thermochemical conversion process that is of both industrial and ecological importance. From designing and operating industrial biomass conversion systems to modeling the spread of wildfires, an understanding of solid state pyrolysis kinetics is imperative. A critical review of kinetic models and mathematical approximations currently employed in solid state thermal analysis is provided. Isoconversional and model-fitting methods for estimating kinetic parameters are comparatively evaluated. The thermal decomposition of biomass proceeds via a very complex set of competitive and concurrent reactions and thus the exact mechanism for biomass pyrolysis remains a mystery. The pernicious persistence of substantial variations in kinetic rate data for solids irrespective of the kinetic model employed has exposed serious divisions within the thermal analysis community and also caused the broader scientific and industrial community to question the relevancy and applicability of all kinetic data obtained from heterogeneous reactions. Many factors can influence the kinetic parameters, including process conditions, heat and mass transfer limitations, physical and chemical heterogeneity of the sample, and systematic errors. An analysis of thermal decomposition data obtained from two agricultural residues, nutshells and sugarcane bagasse, reveals the inherent difficulty and risks involved in modeling heterogeneous reaction systems.
机译:生物质热解是一种基本的热化学转化过程,具有工业和生态意义。从设计和运行工业生物质转化系统到模拟野火的蔓延,对固态热解动力学的了解是必不可少的。提供了对目前在固态热分析中使用的动力学模型和数学近似的严格审查。估计了动力学参数的等转换和模型拟合方法。生物质的热分解通过一组非常复杂的竞争性反应和并行反应进行,因此生物质热解的确切机理仍然是个谜。不管采用何种动力学模型,固体动力学数据中大量变化的有害持久性暴露了热分析界的严重分歧,也引起了更广泛的科学和工业界对从异质反应获得的所有动力学数据的相关性和适用性提出质疑。许多因素会影响动力学参数,包括工艺条件,传热和传质限制,样品的物理和化学异质性以及系统误差。对从两种农业残留物,坚果壳和甘蔗渣中获得的热分解数据进行的分析显示,建模异质反应系统涉及固有的困难和风险。

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