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首页> 外文期刊>Organic process research & development >Quantitative Link between Secondary Nucleation and Mixing Hydrodynamics in Batch Cooling Crystallization: A New Approach in Process Development
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Quantitative Link between Secondary Nucleation and Mixing Hydrodynamics in Batch Cooling Crystallization: A New Approach in Process Development

机译:批量冷却结晶中次级成核和混合流体动力学的定量联系:过程开发中的一种新方法

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摘要

Precise control of a crystallization process requires a clear understanding of nucleation kinetics. Interpreting secondary nucleation threshold (SNT) of a given crystallization process under optimized hydrodynamic conditions can highlight the impact of critical process variables on product particle size distribution (PSD). In this work, a new approach is proposed in industrial crystallization process development in which a quantitative link was developed between batch cooling crystallization and fluid turbulent shear stress (TSS). The experiments involve solution crystallization of paracetamol in isopropanol. A novel method was adopted in which a large single seed crystal of paracetamol was held stationary in an agitating reactor. Using particle imaging velocimetry, a constant TSS was obtained across different scales which resulted in a constant SNT because of crystal nuclei breeding. This led to better control over the crystallization process which eventually resulted in a consistent PSD, independent of the scale. A uniform PSD was observed at each scale which was evident through scanning electron microscopy. The investigation explicates that it is feasible to control PSD across different scales by controlling the SNT through hydrodynamics. This is proposed to be a robust approach in the crystallization process via crystal nuclei breeding, hence, providing a potential opportunity to improve the manufacturing process.
机译:精确控制结晶过程需要清楚地了解核心动力学。解释在优化的流体动力学条件下给定结晶过程的辅助成核阈值(SNT)可以突出临界过程变量对产品粒度分布(PSD)的影响。在这项工作中,在工业结晶过程开发中提出了一种新方法,其中在批量冷却结晶和流体湍流剪切应力(TS)之间开发了定量链路。实验涉及扑热氨基醇在异丙醇中的溶液结晶。采用一种新的方法,其中扑热氨基醇的大单种子晶体在搅拌反应器中保持静止。使用粒子成像速度,在不同的尺度上获得恒定的TSS,这导致由于晶体核育种导致恒定的SNT。这导致更好地控制结晶过程,该过程最终导致一致的PSD,与规模无关。在每个等级中观察到均匀的PSD,其通过扫描电子显微镜明显明显。调查透析了通过控制SNT通过流体动力学来控制不同尺度的PSD是可行的。这被提出通过晶体核育种在结晶过程中是一种稳健的方法,因此提供了改善制造过程的潜在机会。

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