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Investigation and modeling of the mechanisms involved in batch cooling crystallization and polymorphism through efficient use of the FBRM .

机译:调查和建模的机制参与批量冷却结晶和多态性通过有效利用FBRM。

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In the pharmaceutical and specialty chemical industries, batch crystallization is used widely in the production of high-value added species. It is widely recognized that product properties, some of which may be related directly to the utility of the drug, and downstream processes, such as tableting, are influenced by crystal morphology, size, and shape. The ability to observe on-line the evolution of the population density and detect a polymorphic transformation would constitute a major asset in understanding crystallizer operation and the phenomena that influence product quality.;Focused-beam reflectance measurement (FBRM) is among the process analytical technologies (PAT) that hold promise for enhanced monitoring of pharmaceutical crystallization. It is based on scattering of laser light and provides a methodology for online monitoring of a representation of the crystal population in either batch or continuous crystallization systems. Properly installed, the FBRM allows on-line determination of the chord-length density, which is a complex function of crystal geometry and is statistically related to the population density. A model based on the geometry of the crystal was therefore established to relate both densities and thus enable computation of the population density from a measured chord length density. The evolution of the population density as a function of time leads to the estimation of the supersaturation and therefore allows the determination of the systems kinetics. From there, the population balance can be solved.;Paracetamol is a common substance which exhibit polymorphism and is mainly used as an analgesic and antipyretic drug. The developed model was here applied to batch cooling crystallization of paracetamol from ethanol solutions; this system was also used to explore the utility of FBRM data in detection of the polymorphic transformations. As different shapes generate different chord length densities, a transition from one polymorphic form with one specific crystal habit to another can be tracked through an efficient use of the FBRM.;The purpose of the present study is to use the FBRM to monitor the evolution of the crystallization process, develop a predictive model describing the evolution of the process, and monitor polymorphic transformation. The end results would be the possibility to implement a better control of the crystallization process that would ensure that downstream processing and product quality meet expectations.
机译:在制药和特种化学工业中,批量结晶广泛用于高附加值物种的生产。众所周知,产品的性能受晶体形态,大小和形状的影响,其中一些性能可能与药物的用途直接相关,而下游过程(如压片)也受到影响。在线观察种群密度的变化并检测多态转化的能力将成为了解结晶器操作和影响产品质量的现象的主要资产。聚焦光束反射率测量(FBRM)是过程分析技术之一(PAT),有望加强对药物结晶的监测。它基于激光的散射,并提供了一种在线监视批处理或连续结晶系统中晶体数量表示的方法。正确安装后,FBRM可以在线确定弦长密度,弦长密度是晶体几何形状的复杂函数,并且在统计上与总体密度相关。因此,建立了基于晶体几何形状的模型来关联两种密度,从而能够根据测得的弦长密度来计算种群密度。人口密度随时间的变化导致过饱和度的估计,因此可以确定系统动力学。从那里,可以解决人口平衡。对乙酰氨基酚是一种具有多态性的常见物质,主要用作止痛和解热药。这里开发的模型用于对乙酰氨基酚从乙醇溶液中的分批冷却结晶。该系统还用于探索FBRM数据在多态转化检测中的实用性。由于不同的形状会产生不同的弦长密度,因此可以通过有效利用FBRM来跟踪从一种具有一种特定晶体习性的多态形式到另一种晶体习惯的转变。;本研究的目的是使用FBRM来监测结晶过程,开发描述该过程演变的预测模型,并监控多态转化。最终结果是可以更好地控制结晶过程,从而确保下游加工和产品质量达到预期。

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