Bodák Brigitta, Mazzotti Marco
Institute of Energy and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.
Cryst Growth Des. 2022 Mar 2;22(3):1846-1856. doi: 10.1021/acs.cgd.1c01398. Epub 2022 Feb 9.
Solid-state deracemization via temperature cycles converts a racemic crystal mixture into an enantiopure product by periodic cycling of the temperature in the presence of a racemization catalyst. A continuous counterpart of this conventional batch-operated process is proposed that can be performed in mixed suspension mixed product removal crystallizers (MSMPRCs). More specifically, three different configurations are described to perform periodic forcing via temperature cycles, which differ from each other in the type of the feed and in the withdrawal system. We have developed a model by extending our recent population balance equation model of batch solid-state deracemization via temperature cycles, and we exploit this tool to analyze the start-up and periodic steady-state behavior. Moreover, we compare the performance of the different configurations based on the selected key performance indicators, namely, average periodic steady-state enantiomeric excess and productivity. The process with solution feed yields pure enantiomers, while the solid and suspension-fed process alternatives result in highly enantiomerically enriched crystals. We further design an MSMPRC cascade to overcome this purity limitation. This work discusses guidelines on how to transform the batch process of temperature cycles into a continuous operation, which enables stable, unattended operation and chiral crystal production with consistent product quality.
通过温度循环实现的固态消旋化是在消旋化催化剂存在的情况下,通过温度的周期性循环将外消旋晶体混合物转化为对映体纯产物。本文提出了一种该传统间歇操作过程的连续对应方法,可在混合悬浮混合产物移除结晶器(MSMPRC)中进行。更具体地说,描述了三种不同的配置来通过温度循环进行周期性强制操作,它们在进料类型和出料系统方面彼此不同。我们通过扩展我们最近关于通过温度循环进行间歇固态消旋化的种群平衡方程模型,开发了一个模型,并利用这个工具来分析启动和周期性稳态行为。此外,我们根据选定的关键性能指标,即平均周期性稳态对映体过量和生产率,比较不同配置的性能。溶液进料的过程可产生纯对映体,而固体进料和悬浮液进料的过程替代方案则产生高度对映体富集的晶体。我们进一步设计了一个MSMPRC级联来克服这种纯度限制。这项工作讨论了如何将温度循环的间歇过程转化为连续操作的指导方针,这使得能够进行稳定、无人值守的操作以及生产具有一致产品质量的手性晶体。