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40/60 重量比的蔗糖/甘氨酸辅料体系冷冻过程中甘氨酸的结晶:一种替代约翰逊-梅尔-阿夫拉米(JMA)方程用于模拟分散动力学的方法。

Crystallization of glycine during freezing of a 40/60 w/w sucrose/glycine excipient system: an alternative to the Johnson-Mehl-Avrami (JMA) equation for modeling dispersive kinetics.

作者信息

Skrdla Peter J

出版信息

J Pharm Sci. 2007 Aug;96(8):2107-10. doi: 10.1002/jps.20846.

Abstract

The isothermal crystallization of glycine in a 40/60 (w/w) sucrose/glycine excipient system is examined with the goal of comparing the kinetic information obtained by using the Johnson-Mehl-Avrami (JMA) equation with that collected using a novel, dispersive kinetic model equation recently proposed by the author. It is found that while both models explain the experimental data reasonably well, the latter equation fits the data, collected at temperatures in the range 241-251 K, without the use of empirical parameters. The values of the activation energy and Arrhenius constant (frequency factor) for both models agree within experimental error.

摘要

研究了甘氨酸在40/60(w/w)蔗糖/甘氨酸辅料体系中的等温结晶过程,目的是比较使用约翰逊-梅尔-阿夫拉米(JMA)方程获得的动力学信息与使用作者最近提出的新型分散动力学模型方程收集的动力学信息。结果发现,虽然两个模型都能较好地解释实验数据,但后一个方程在不使用经验参数的情况下,拟合了在241-251K温度范围内收集的数据。两个模型的活化能和阿仑尼乌斯常数(频率因子)值在实验误差范围内一致。

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