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Analytical technology aided optimization and scale-up of impinging jet mixer for reactive crystallization process

机译:分析技术有助于优化和扩大冲击射流混合器的反应结晶过程

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摘要

Reactive crystallization is widely used in the manufacture of active pharmaceutical ingredients (APIs). Since APIs often have low solubility, traditional stirred tank reactors and the route of process operation and control using metastable zone width are not effective. The current work investigated the integration of an impinging jet mixer and a stirred tank crystallizer that can take advantage of both the reaction and crystallization characteristics, the focus being on design optimization and scale-up using process analytical techniques based on the Fourier transform Infrared spectroscopy and Focused Beam Reflectance Measurement, as well as X-ray diffraction and particle imaging Morphologi G3. The parameters for process operation and design of the impinging jet mixer were optimized. The research was carried out with reference to the manufacture of an antibiotic, sodium cefuroxime, firstly in a 1L reactor, then a 10L reactor. The crystals produced showed higher crystallinity, narrower size distribution, higher stability and purity.
机译:反应结晶被广泛用于生产活性药物成分(API)。由于API通常具有低溶解度,因此传统的搅拌釜反应器以及使用亚稳区宽度的工艺操作和控制路线均无效。当前的工作研究了撞击射流混合器和搅拌釜结晶器的集成,该集成可同时利用反应和结晶特性,重点是使用基于傅立叶变换红外光谱法的工艺分析技术对设计进行优化和放大。聚焦光束反射率测量以及X射线衍射和Morphologi G3颗粒成像。优化了冲击射流混合器的工艺操作和设计参数。该研究是针对抗生素头孢呋辛钠的制造进行的,首先在1L反应器中,然后在10L反应器中。产生的晶体显示出较高的结晶度,较窄的尺寸分布,较高的稳定性和纯度。

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