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Thermal Degradation Behavior and Kinetics of 3D Porous Polycarbonate Monoliths

机译:3 d的热降解行为和动力学多孔聚碳酸酯巨石

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摘要

Abstract The thermal degradation behavior and kinetics are important to understand the nature of polymers. In this work, the thermal degradation behavior and kinetics of polycarbonate (PC) monoliths with a three dimension (3D) continuous interconnected porous structure is investigated. Thermogravimetric analysis reveals that the thermal stability of the PC monoliths shows a significant reduction compared to pristine PC due to its 3D porous structure, which drastically increases the heating surface area during the thermal degradation process. An interesting second degradation stage at 480–550?°C is observed for PC monoliths from the barrier effect formed by the collapse and coalescence of the porous structure at high temperature, which is further confirmed by volatile and solid char analyses. The kinetic analysis suggests that the PC monolith shows a low degradation activation energy ( E α ) at the first degradation stage, which increases rapidly and goes beyond the E α of pristine PC at the second degradation stage.
机译:热降解行为和动力学是很重要的了解聚合物的性质。工作,和热降解行为动力学的聚碳酸酯(PC)巨石三维(3 d)连续的相互联系多孔结构调查。热重分析表明,热稳定性的电脑整块材料显示了原始的电脑由于相比显著降低三维多孔结构,彻底增加了受热面区域中热降解过程。在480 - 550年第二次退化阶段吗?观察电脑巨石从障碍的效果的崩溃和聚结形成的多孔结构在高温下,进一步证实了不稳定和坚实的字符分析。PC庞然大物显示低降解激活能源( E α )在第一个退化阶段,从而增加迅速,超出了 E α 在第二个退化阶段原始PC。

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