Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, P.O. Box 137, 11001 Belgrade, Serbia.
Bioresour Technol. 2011 Oct;102(20):9763-71. doi: 10.1016/j.biortech.2011.07.080. Epub 2011 Jul 27.
The non-isothermal pyrolysis kinetics of Acetocell (the organosolv) and Lignoboost® (kraft) lignins, in an inert atmosphere, have been studied by thermogravimetric analysis. Using isoconversional analysis, it was concluded that the apparent activation energy for all lignins strongly depends on conversion, showing that the pyrolysis of lignins is not a single chemical process. It was identified that the pyrolysis process of Acetocell and Lignoboost® lignin takes place over three reaction steps, which was confirmed by appearance of the corresponding isokinetic relationships (IKR). It was found that major pyrolysis stage of both lignins is characterized by stilbene pyrolysis reactions, which were subsequently followed by decomposition reactions of products derived from the stilbene pyrolytic process. It was concluded that non-isothermal pyrolysis of Acetocell and Lignoboost® lignins can be best described by n-th (n>1) reaction order kinetics, using the Weibull mixture model (as distributed reactivity model) with alternating shape parameters.
采用热重分析法研究了乙酰纤维素(有机溶剂法)和 Lignoboost®(硫酸盐法)木质素在惰性气氛中的非等温热解动力学。通过等转化率分析得出,所有木质素的表观活化能强烈依赖于转化率,表明木质素的热解不是单一的化学反应。确定了乙酰纤维素和 Lignoboost®木质素的热解过程分为三个反应步骤,这通过相应的等动力学关系(IKR)的出现得到了证实。发现两种木质素的主要热解阶段的特征是二苯乙烯热解反应,随后是二苯乙烯热解产物的分解反应。得出结论,使用具有交替形状参数的 Weibull 混合物模型(作为分布反应性模型),通过 n 次(n>1)反应级数动力学,可以最好地描述乙酰纤维素和 Lignoboost®木质素的非等温热解。