Wan Haibo, Huang Zhen
Department of Physical Education, Tianjin University of Commerce, Tianjin 300134, China.
Department of Packaging Engineering, Tianjin University of Commerce, Tianjin 300134, China.
Polymers (Basel). 2022 Apr 7;14(8):1501. doi: 10.3390/polym14081501.
A detailed kinetic analysis of pyrolysis processes of Tennis string polyurethane (TSPU) waste and waterborne polyurethane (WPU) waste was carried out in the present paper. Non-isothermal pyrolysis characterizations of two wastes were acquired through thermogravimetric determinations under the constant heating rates of 5, 10, 15 and 20 K/min. Experimental results showed that the pyrolysis processes of TSPU and WPU were mainly characteristic of three stages and two stages, respectively. Two pyrolysis performance indices, the devolatilization index (DI) and heat-resistance index (HRI), were used to interpret the heating rate effect on the pyrolysis features and different thermal dependences of TSPU and WPU. Isoconversional kinetic analysis was thoroughly performed with model-free and model-fitting methods. By using Starink, Vyazovkin-Dollimore and Coats-Redfern methods, the activation energies thus obtained were in the range of 103.3148.3 kJ/mol and 92.5204.3 kJ/mol, respectively, for TSPU and WPU, over the entire pyrolysis process. Their respective pre-exponential factor lnA values were determined to be within 17.9433.42 min and 16.5620.82 min. Thermodynamic parameters in terms of Δ, Δ and Δ throughout the entire pyrolysis process were also calculated. Finally, by means of the model-fitting Coats-Redfern method, the most appropriate mechanism functions were ascertained for, respectively, describing multi-stage pyrolysis degradations of TSPU and WPU waste. These results may offer meaningful support for designing any industrial pyrolysis reactor to dispose of polyurethane wastes.
本文对网球线聚氨酯(TSPU)废料和水性聚氨酯(WPU)废料的热解过程进行了详细的动力学分析。通过在5、10、15和20 K/min的恒定升温速率下进行热重测定,获得了两种废料的非等温热解特征。实验结果表明,TSPU和WPU的热解过程分别主要具有三个阶段和两个阶段的特征。使用两个热解性能指标,即挥发指数(DI)和耐热指数(HRI),来解释升温速率对TSPU和WPU热解特征以及不同热依赖性的影响。采用无模型和模型拟合方法对等转化率动力学进行了全面分析。通过使用Starink、Vyazovkin-Dollimore和Coats-Redfern方法,在整个热解过程中,TSPU和WPU获得的活化能分别在103.3148.3 kJ/mol和92.5204.3 kJ/mol范围内。它们各自的指前因子lnA值分别确定在17.9433.42 min和16.5620.82 min之间。还计算了整个热解过程中的热力学参数Δ、Δ和Δ。最后,通过模型拟合Coats-Redfern方法,分别确定了描述TSPU和WPU废料多阶段热解降解的最合适的机理函数。这些结果可为设计任何工业热解反应器处理聚氨酯废料提供有意义的支持。