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Novel Impinging Jet and Continuous Crystallizer Design for Rapid Reactive Crystallization of Pharmaceuticals

机译:用于快速反应结晶的新型撞击射流和连续结晶器设计

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Reactive crystallization is an important operation in the pharmaceutical industry for the production of the active pharmaceutical ingredients (APIs), but has not been as widely studied as cooling or anti-solvent crystallization. Reactive crystallization has many unique features that make them different from cooling or anti-solvent crystallization, even leading to some concepts and methods not directly applicable to the former. Literature survey reveals that previous research on reactive crystallization has mainly been conducted for inorganic materials which are known to be simpler than crystallization of organic molecules. The focus of this research project was to carry out research oh the process design and optimization of organic reactive crystallization. The objective was to research on novel crystallizer designs that suit and take advantages of the features of reactive crystallization, and on advanced modeling and optimization techniques with the aim of manufacturing high quality products. Process analytical technology was used as a supporting tool to achieve the above stated objectives. The results showed that by using novel impinging jet design, the product had uniform size distribution and superior crystallinity. In addition, continuous process design can achieve a greater amount of product handling and reduce the batch-to-batch variation.
机译:反应性结晶是制药工业的重要操作,用于生产活性药物成分(API),但尚未广泛地研究冷却或抗溶剂结晶。反应结晶具有许多独特的特征,使它们与冷却或抗溶剂结晶不同,甚至导致某些概念和方法不直接适用于前者。文献调查显示,前一种对无机结晶的研究主要是针对已知比有机分子的结晶更简单的无机材料的研究。该研究项目的重点是进行研究oh过程设计和优化有机反应结晶。该目的是研究新型结晶器设计,适合反应性结晶的特点,以及高质量产品的先进建模和优化技术。过程分析技术被用作达到上述目的的支撑工具。结果表明,通过使用新型撞击喷射设计,产品具有均匀的尺寸分布和优异的结晶度。此外,连续工艺设计可以实现更大量的产品处理并降低批量批量变化。

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