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三柱间歇模拟移动床色谱法:2. 用于分离特罗格碱的实验实施

Three-column intermittent simulated moving bed chromatography: 2. Experimental implementation for the separation of Tröger's Base.

作者信息

Jermann Simon, Alberti Andreas, Mazzotti Marco

机构信息

Institute of Process Engineering, ETH Zurich, Sonneggstrasse 3, CH-8092 Zurich, Switzerland.

Institute of Process Engineering, ETH Zurich, Sonneggstrasse 3, CH-8092 Zurich, Switzerland.

出版信息

J Chromatogr A. 2014 Oct 17;1364:107-16. doi: 10.1016/j.chroma.2014.08.057. Epub 2014 Aug 26.

DOI:10.1016/j.chroma.2014.08.057
PMID:25239701
Abstract

The three-column intermittent simulated moving bed (3C-ISMB) process has been presented in the first part of this series [1]. A theoretical comparative analysis of the new process to intermittent simulated moving bed (I-SMB) demonstrated successfully the potential of the 3C-ISMB technology. Particularly, 3C-ISMB was shown to substantially outperform I-SMB in terms of productivity whilst maintaining high purity specifications and without significantly sacrificing solvent consumption. Moreover, we demonstrated the applicability of Triangle Theory for 3C-ISMB design, which is an important advantage compared to other modified SMB schemes. In the present work we report on the experimental implementation of the 3C-ISMB technology demonstrating the simplicity of retrofitting an existing SMB or I-SMB plant. Moreover, we perform an experimental comparative analysis studying the well-known separation of Tröger's Base enantiomers in pure ethanol on Chiralpak AD™. In a comprehensive series of experimental runs, each examining three different modes of operation, applying total feed concentrations ranging from 5 g/l to 17.4 g/l, we assess and compare the separation performances of both conventional I-SMB and 3C-ISMB. This series of experiments successfully demonstrates that 3C-ISMB delivers the same high purity levels as conventional I-SMB whilst significantly outperforming the conventional process in terms of productivity; in fact an increase of more than 80% is achieved.

摘要

本系列的第一部分介绍了三柱间歇模拟移动床(3C-ISMB)工艺[1]。对新工艺与间歇模拟移动床(I-SMB)进行的理论对比分析成功证明了3C-ISMB技术的潜力。特别是,3C-ISMB在保持高纯度规格且不显著增加溶剂消耗的情况下,在生产率方面明显优于I-SMB。此外,我们证明了三角形理论在3C-ISMB设计中的适用性,与其他改进的SMB方案相比,这是一个重要优势。在本工作中,我们报告了3C-ISMB技术的实验实施情况,展示了改造现有SMB或I-SMB装置的简易性。此外,我们进行了一项实验对比分析,研究了在Chiralpak AD™上纯乙醇中特罗格碱对映体的著名分离。在一系列全面的实验运行中,每次考察三种不同的操作模式,应用的总进料浓度范围为5 g/l至17.4 g/l,我们评估并比较了传统I-SMB和3C-ISMB的分离性能。这一系列实验成功证明,3C-ISMB能达到与传统I-SMB相同的高纯度水平,同时在生产率方面显著优于传统工艺;实际上生产率提高了80%以上。

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