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超声能否替代芳香胺流动反应结晶中的晶种添加?

Can Ultrasound Replace Seeding in Flow Reactive Crystallization of an Aromatic Amine?

作者信息

Zhang Biyu, Stefanidis Georgios D, Van Gerven Tom

机构信息

Department of Chemical Engineering, Process Engineering for Sustainable Systems, KU Leuven, Celestijnenlaan 200F, 3001 Heverlee, Belgium.

Department of Process Analysis and Plant Design, School of Chemical Engineering, National Technical University of Athens, Iroon Polytecneiou 9, Zografou, 15780 Athens, Greece.

出版信息

Org Process Res Dev. 2024 Dec 10;28(12):4431-4443. doi: 10.1021/acs.oprd.4c00385. eCollection 2024 Dec 20.

Abstract

Continuous crystallization has gained substantial interest due to its high product reproducibility, high labor efficiency, and low capital and production costs. Continuous seeding is preferable and often even required in the application of pharmaceuticals, which presents a bottleneck in continuous crystallization. This work proposes to apply ultrasound for continuous in situ seeding in the continuous reactive crystallization of an aromatic amine. Flow crystallization experiments with both ultrasound and conventionally prepared seeds were conducted. It was found that sonication initiated nucleation and continuously produced crystals in a stable manner. The nucleation rate could be controlled by adjusting the sonication power, highlighting the advantages of the sonicated seed generation strategy. Experiments under different flow conditions demonstrated that a higher flow rate combined with an appropriate sonication power was favorable for robust particle quality, reduced likelihood of clogging, and better reproducibility. Compared with the conventional addition of seed crystals, sonication-induced crystallization achieved higher yields and produced products with a narrow and unimodal size distribution. All sonicated experiments exhibited high robustness, indicating the feasibility and reliability of this method as a replacement for conventional seeding techniques in the continuous reactive crystallization of the studied compound. In summary, using ultrasound for continuous in situ seeding of the aromatic amine offers unique advantages in process robustness and product quality control, providing a promising strategy for continuous crystallization of similar systems.

摘要

连续结晶因其高产品重现性、高劳动效率以及低资本和生产成本而备受关注。在制药应用中,连续接种是优选的,甚至常常是必需的,这在连续结晶中构成了一个瓶颈。这项工作提出在芳香胺的连续反应结晶中应用超声进行连续原位接种。进行了有超声和常规制备晶种的流动结晶实验。结果发现,超声处理引发成核并以稳定的方式持续产生晶体。成核速率可通过调节超声功率来控制,突出了超声晶种生成策略的优势。不同流动条件下的实验表明,较高的流速与适当的超声功率相结合有利于获得稳健的颗粒质量、降低堵塞可能性以及更好的重现性。与常规添加晶种相比,超声诱导结晶实现了更高的产率,并生产出具有窄且单峰尺寸分布的产品。所有超声处理实验均表现出高稳健性,表明该方法作为所研究化合物连续反应结晶中传统接种技术的替代方法具有可行性和可靠性。总之,在芳香胺的连续原位接种中使用超声在过程稳健性和产品质量控制方面具有独特优势,为类似体系的连续结晶提供了一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e033/11667746/d21b401a1620/op4c00385_0001.jpg

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