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Kinetics of the thermal decomposition of processed poly(lactic acid)

机译:加工后的聚乳酸热分解的动力学

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The kinetics of the thermal decomposition of processed poly(lactic acid) has been studied and compared to that of raw material. Processing consisted of two different industrial processes: 1) Injection (with or without further annealing); 2) Extrusion followed by injection (with or without further annealing). For this study, an integral method (based on the general analytical solution), differential methods (based on the first conversion derivative and on the 2nd derivative) and special methods have been used. On the other hand, a method based on the maximum decomposition rate has been considered. By doing that, the kinetic parameters (reaction order, frequency factor and activation energy) have been determined. It has been demonstrated that there was only one first-order reaction for the entire conversion range. A new equation (based on the second conversion derivative plot as a function of temperature) was developed allowing the calculation of the reaction order. This method quantifies peak areas (and not peak heights, as reported by Kissinger). It is very useful because it considers both peak shape and width. Activation energy, as determined by using the general analytical solution, was 318 kj/mol for unprocessed poly(lactic acid) whereas it was 280 ± 5 kj/mol for processed materials. AH the processed materials had approximately the same thermal stability (T_5 = 333.0-335.8 ℃, at 95% confidence level), which was slightly lower than that of unprocessed materials (T_5 = 337.5 ℃). PLA melting (during extrusion and injection) was responsible for depolymerization reactions (the small molecules formed during melting processes can volatilize readily).
机译:研究了加工后的聚乳酸的热分解动力学,并将其与原料进行了比较。加工包括两个不同的工业过程:1)注射(有或没有进一步退火); 2)挤出然后注射(有或没有进一步退火)。在本研究中,使用了积分方法(基于一般分析溶液),微分方法(基于一阶转换导数和二阶导数)和特殊方法。另一方面,已经考虑了基于最大分解率的方法。通过这样做,确定了动力学参数(反应顺序,频率因子和活化能)。已经证明在整个转化范围内只有一个一阶反应。建立了新的方程式(基于第二转换导数图作为温度的函数),可以计算反应阶数。此方法量化峰面积(而不是峰高,由Kissinger报告)。这非常有用,因为它同时考虑了峰的形状和宽度。通过使用常规分析溶液确定的活化能,对于未加工的聚乳酸为318 kj / mol,而对于经加工的材料为280±5 kj / mol。加工后的材料具有大约相同的热稳定性(T_5 = 333.0-335.8℃,置信度为95%),略低于未加工的材料(T_5 = 337.5℃)。 PLA熔融(在挤出和注射过程中)负责解聚反应(熔融过程中形成的小分子易于挥发)。

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