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Heat treatment kinetics using three-stage approach for sustainable wood material production

机译:采用三阶段探讨可持续木材生产的热处理动力学

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The purpose of this study is to develop a numerical tool to predict the mass loss of a wood board during heat treatment as a marker of the process advancement. Mass loss dynamics during the wood heat treatment is experimentally obtained using a specially conceived equipment. The investigation method is applied on large scale wood samples whose radial and transvers dimensions are close to the boards used in industry. A two-step reaction mechanism is adopted to describe the behavior of wood thermodegradation. Model parameters are obtained by fitting the experimental data according to a new approach developed in this study for their optimal determination. The originality of the implemented modelling strategy is the establishment of a three-stage approach based on the analysis of wood thermal sensitivity depending on the treatment temperature range. Model equations are solved numerically by the commercial package Matlab' software. A good agreement is achieved between the numerical predictions and the experimental data. The developed model and established kinetics can be used for heat treatment process and reactor design in industry to produce wood materials for their applications.
机译:本研究的目的是开发一个数字工具,以预测热处理期间木板的质量损失作为过程进步的标记。使用特殊构思的设备进行实验获得木材热处理过程中的大规模损失动态。研究方法适用于大型木材样品,其径向和横向尺寸靠近工业中使用的板。采用两步反应机制来描述木材热降解的行为。通过根据本研究中开发的新方法拟合实验数据来获得模型参数,以获得其最佳测定。实施的建模策略的原创性是根据处理温度范围的基于木质热敏的分析建立三级方法。模型方程由商业包MATLAB软件数量解决。在数值预测和实验数据之间实现了良好的一致性。开发的模型和已建立的动力学可用于工业中的热处理过程和反应堆设计,以生产用于其应用的木材。

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