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Thermal decomposition of wood: Kinetics and degradation mechanisms

机译:木材的热分解:动力学和降解机理

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摘要

The influence of wood components and cellulose crystallinity on the kinetic degradation of different wood species has been investigated using thermogravimetry. Four wood species were studied: Pinus elliottii (PIE), Eucalyptus grandis (EUG), Mezilaurus itauba (ITA) and Dipteryx odorata (DIP). Thermogravimetric results showed that higher extractive contents in the wood accelerate the degradation process and promote an increase in the conversion values at low temperatures. Alternatively, the results indicated that the cellulose crystallinity inhibits wood degradation; organized cellulose regions slow the degradation process because the well-packed cellulose chains impede heat diffusion, which improves the wood's thermal stability. The wood degradation mechanism occurs by diffusion processes when the conversion values are below 0.4. When the conversion values are above 0.5, the degradation is a result of random nucleation with one nucleus in each particle.
机译:使用热重法研究了木材成分和纤维素结晶度对不同木材物种动力学降解的影响。研究了四种木种:松树松(PIE),大桉树(EUG),伊塔梅叶梅斯(Mezilaurus itauba)(ITA)和香竹(Dipteryx odorata)(DIP)。热重分析结果表明,木材中较高的提取物含量可加速降解过程并促进低温下转化值的增加。另外,结果表明纤维素的结晶度抑制了木材的降解。有组织的纤维素区域减缓了降解过程,因为填充良好的纤维素链会阻碍热扩散,从而改善木材的热稳定性。当转化值低于0.4时,木材的降解机理是通过扩散过程发生的。当转化率值大于0.5时,降解是每个颗粒中有一个核的随机成核的结果。

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