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Kinetic Analysis of the Thermal Decomposition of Latex Foam according to Thermogravimetric Analysis

机译:乳胶泡沫热分解的动力学分析根据热重分析

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摘要

The thermal decomposition of latex foam was investigated under nonisothermal conditions. Pieces of commercial mattress samples were subjected to thermogravimetric analysis (TG) over a heating range from 5°C min−1 to 20°C min−1. The morphology of the latex foam before and after combustion was observed by scanning electron microscopy (SEM), and the primary chemical composition was investigated via infrared spectroscopy (FT-IR). The kinetic mechanism and relevant parameters were calculated. Results indicate that the decomposition of latex foam in the three major degradation phases is controlled by third-order reaction (F3) and by Zhuravlev’s diffusion equation (D5). The mean E values of each phase as calculated according to a single heating rate nonisothermal method are equal to 41.91 ± 0.06 kJ mol−1, 86.32 ± 1.04 kJ mol−1, and 19.53 ± 0.11 kJ mol−1, respectively. Correspondingly, the preexponential factors of each phase are equal to 300.39 s−1, 2355.65 s−1, and 27.90 s−1, respectively. The mean activation energy E and preexponential factor A of latex foam estimated according to multiple heating rates and a nonisothermal method are 92.82 kJ mol−1 and 1.12 × 10−3 s−1, respectively.
机译:胶乳泡沫体的热分解非等温条件下的影响。商业床垫样品片进行在加热范围的热重分析(TG)从5℃min-1的至20℃min-1的。通过扫描电子显微镜(SEM)观察到的燃烧之前和之后的胶乳泡沫体的形态,并且该主化学组成通过红外光谱(FT-IR)分析。动力学机制和相关参数进行了计算。结果表明,乳胶泡沫的三个主要降解阶段分解是通过三阶反应(F3),通过ZHURAVLEV的扩散方程(D5)控制。作为根据单个加热速率非等温方法计算各相的均值为E值分别等于41.91±0.06千焦耳摩尔-1,86.32±1.04千焦耳摩尔-1,和19.53±0.11千焦耳摩尔-1,。相应地,各相的指前因子等于300.39 S-1,2355.65 S-1,和27.90 S-1,分别。平均活化能E和胶乳泡沫的指前因子A分别92.82千焦耳摩尔-1和1.12×10-3 S-1中,根据多个加热速率和非等温方法进行估计。

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