University of Belgrade, Faculty of Mechanical Engineering, Fuel and Combustion Laboratory, Belgrade, Serbia.
University of Belgrade, Institute of Nuclear Sciences "Vinča", Department of Physical Chemistry, Belgrade, Serbia.
PLoS One. 2018 Oct 31;13(10):e0206657. doi: 10.1371/journal.pone.0206657. eCollection 2018.
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isothermal conditions using simultaneous thermal analyses (STA) was investigated. Devolatilization kinetics was implemented through combined application of model-free methods and DAEM (distributed activation energy model) using Gaussian distribution functions of activation energies. Results obtained were used in the curve prediction of the rate of mass loss against temperature at various heating rates by numerical optimization. The possible calculation of biomass samples behavior under pyrolytic conditions as the summation of their pseudo-components, hemicelluloses, cellulose, and lignin is also explored. The differences between experimental and calculated data are less than 3.20% offering a quality test of applicability of proposed model on the kinetic studies of a wide range of biomass samples. It seems that the most physically realistic model is the decomposition of biomass in three reactions, depending on the composition of the biomass regarding hemicelluloses, cellulose, and lignin. Kinetic model applied here may serve as a starting point to build more complex models capable of describing the thermal behavior of plant materials during thermochemical processing.
采用同步热分析(STA)研究了各种类型生物质(农业和木材副产品)在非等温条件下的热解过程。通过无模型方法和 DAEM(分布活化能模型)的联合应用,使用活化能的高斯分布函数来实现挥发分动力学。通过数值优化,将得到的结果用于在不同加热速率下预测质量损失率随温度的曲线。还探索了通过其伪组分、半纤维素、纤维素和木质素的总和来计算生物质样品在热解条件下的行为的可能性。实验数据和计算数据之间的差异小于 3.20%,这为在广泛的生物质样品的动力学研究中应用所提出的模型提供了质量适用性测试。似乎最符合物理现实的模型是根据生物质中半纤维素、纤维素和木质素的组成,将生物质分解为三个反应。这里应用的动力学模型可以作为起点,构建更复杂的模型,能够描述植物材料在热化学加工过程中的热行为。