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关于在弹状流结晶器内连续结晶的物料系统适用性快速决策的策略

Strategy for Fast Decision on Material System Suitability for Continuous Crystallization Inside a Slug Flow Crystallizer.

作者信息

Kufner Anne Cathrine, Krummnow Adrian, Danzer Andreas, Wohlgemuth Kerstin

机构信息

Department of Biochemical and Chemical Engineering, Laboratory of Plant and Process Design, TU Dortmund University, D-44227 Dortmund, Germany.

Department of Biochemical and Chemical Engineering, Laboratory of Thermodynamics, TU Dortmund University, D-44227 Dortmund, Germany.

出版信息

Micromachines (Basel). 2022 Oct 21;13(10):1795. doi: 10.3390/mi13101795.

Abstract

There is an increasing focus on two-phase flow in micro- or mini-structured apparatuses for various manufacturing and measurement instrumentation applications, including the field of crystallization as a separation technique. The slug flow pattern offers salient features for producing high-quality products, since narrow residence time distribution of liquid and solid phases, intensified mixing and heat exchange, and an enhanced particle suspension are achieved despite laminar flow conditions. Due to its unique features, the slug flow crystallizer (SFC) represents a promising concept for small-scale continuous crystallization achieving high-quality active pharmaceutical ingredients (API). Therefore, a time-efficient strategy is presented in this study to enable crystallization of a desired solid product in the SFC as quickly as possible and without much experimental effort. This strategy includes pre-selection of the solvent/solvent mixture using heuristics, verifying the slug flow stability in the apparatus by considering the static contact angle and dynamic flow behavior, and modeling the temperature-dependent solubility in the supposed material system using perturbed-chain statistical associating fluid theory (PC-SAFT). This strategy was successfully verified for the amino acids l-alanine and l-arginine and the API paracetamol for binary and ternary systems and, thus, represents a general approach for using different material systems in the SFC.

摘要

在各种制造和测量仪器应用中,包括作为分离技术的结晶领域,微结构或微小型结构装置中的两相流越来越受到关注。弹状流型对于生产高质量产品具有显著特点,因为尽管是层流条件,但液相和固相的停留时间分布狭窄、混合和热交换增强以及颗粒悬浮得到改善。由于其独特的特性,弹状流结晶器(SFC)是实现高质量活性药物成分(API)小规模连续结晶的一个有前景的概念。因此,本研究提出了一种省时策略,以便在SFC中尽可能快速且无需大量实验工作地实现所需固体产物的结晶。该策略包括使用启发式方法预选溶剂/溶剂混合物,通过考虑静态接触角和动态流动行为来验证装置中弹状流的稳定性,以及使用扰动链统计缔合流体理论(PC-SAFT)对假定材料体系中温度依赖性溶解度进行建模。该策略已成功应用于二元和三元体系中的氨基酸L-丙氨酸和L-精氨酸以及API扑热息痛,因此代表了一种在SFC中使用不同材料体系的通用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d75c/9610778/3ac4a3da77e9/micromachines-13-01795-g001.jpg

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