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Applications of population balance equation modeling to pharmaceutical emulsions

机译:人口平衡方程模型在药物乳液中的应用

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Emulsions are usually generated in high-pressure homogenization chambers. The flow field is these units are typically highly turbulent and chaotic, and mechanisms for drop formation under these conditions are not well understood. In this paper, we have applied the PBE modeling approach to droplet break-up in a high pressure homogenizer using mechanistic functions for breakage rate. We have compared our modeling results to experimental data that we have obtained on a model oil-in-water emulsion. In principle, once these functions are known, the PBE approach can be used in a predictive manner to aid in the selection of process and product variables that will lead to the desired drop size distribution. This was verified for a number of test cases by changing product properties and homogenizing conditions. We observed that the population balance model did a reasonably good job of predicting the drop size distribution and therefore look promising. For cases where the model fails, we discuss strategies for improving predictions for these types of systems.
机译:乳液通常在高压均质室中产生。这些单元的流场通常是高度湍流和混乱的,并且在这些条件下形成液滴的机理还不太清楚。在本文中,我们将PBE建模方法应用于高压均质机中的液滴破碎,并使用机械函数来确定破损率。我们已将建模结果与在水包油型乳化液中获得的实验数据进行了比较。原则上,一旦知道了这些功能,就可以以预测方式使用PBE方法,以帮助选择过程和产品变量,这将导致所需的墨滴尺寸分布。通过更改产品属性和均质化条件,已在许多测试案例中对此进行了验证。我们观察到,人口平衡模型在预测液滴大小分布方面做得相当好,因此看起来很有希望。对于模型失败的情况,我们讨论了用于改进这些类型系统的预测的策略。

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