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A differential scanning calorimetry study of the crystallization kinetics of tristearin-tripalmitin mixtures

机译:差示扫描量热法研究三硬脂精-三棕榈精混合物的结晶动力学

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A comprehensive study of the isothermal crystallization kinetics of tripalmitin-tristearin mixtures was carried out using DSC, with data fitted to the Avrami equation. Polymorphs were identified by subsequent melting of samples in the differential scanning calorimeter, with additional confirmatory information obtained from wide-angle X-ray diffraction. It was found that alpha-, beta'-, and beta-forms require small (< 1.0 degrees C), moderate (3.5-8.5 degrees C), and large (9.0-13.0 degrees C) amounts of subcooling below their respective polymorph melting temperatures for nucleation to occur. Concurrent crystallization of beta and beta' polymorphs was not observed. The beta polymorphs exhibited sharper heat flow exotherms than beta', due to the higher crystallization driving forces experienced. Analysis of apparent induction times shows that the activation free energy of nucleation for the beta-form is significantly higher than for the beta'-form. Samples rich in either species crystallized faster (both shorter apparent induction times and sharper peaks) than samples with equivalent compositions. Driving-force arguments do not fully explain this behavior, strongly suggesting that mass transfer resistances (greatest for equivalent compositions) have a significant effect on kinetics. Multiple crystallization events were observed for 50-80% tristearin samples between 56 and 60 degrees C and were attributed to a demixing of tripalmitin-rich and tristearin-rich beta phases, in line with established phase diagrams.
机译:使用DSC对三棕榈精蛋白-硬脂精混合物的等温结晶动力学进行了全面研究,并将数据拟合到Avrami方程中。通过随后在差示扫描量热仪中熔化样品来鉴定多晶型物,并从广角X射线衍射中获得其他确认信息。发现α,β'和β形式在各自的多晶型物熔化以下需要少量(<1.0摄氏度),中等(3.5-8.5摄氏度)和大量(9.0-13.0摄氏度)的过冷量发生成核的温度。没有观察到β和β'多晶型物的同时结晶。由于经历了更高的结晶驱动力,β多晶型物比β'表现出更强的热流放热。对表观诱导时间的分析表明,β型的成核活化自由能明显高于β'型。与同等组成的样品相比,富含两种物质的样品结晶更快(表观诱导时间更短,峰更尖)。驱动力的论点不能完全解释这种现象,强烈表明传质阻力(等效组成的最大阻力)对动力学有重大影响。在56至60摄氏度之间观察到了50-80%的三硬脂精样品的多次结晶事件,这归因于富含三棕榈精和富含三硬脂精的β相的混合,这与已建立的相图一致。

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