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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Influence of particle size and shell thickness of core-shell packing materials on optimum experimental conditions in preparative chromatography
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Influence of particle size and shell thickness of core-shell packing materials on optimum experimental conditions in preparative chromatography

机译:制备过程中核壳填料的粒径和壳厚对最佳实验条件的影响

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摘要

The applicability of core-shell phases in preparative separations was studied by a modeling approach. The preparative separations were optimized for two compounds having bi-Langmuir isotherms. The differential mass balance equation of chromatography was solved by the Rouchon algorithm. The results show that as the size of the core increases, larger particles can be used in separations, resulting in higher applicable flow rates, shorter cycle times. Due to the decreasing volume of porous layer, the loadability of the column dropped significantly. As a result, the productivity and economy of the separation decreases. It is shown that if it is possible to optimize the size of stationary phase particles for the given separation task, the use of core-shell phases are not beneficial. The use of core-shell phases proved to be advantageous when the goal is to build preparative column for general purposes (e.g. for purification of different products) in small scale separations. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过建模方法研究了核-壳相在制备分离中的适用性。对于具有双朗缪尔等温线的两种化合物,优化了制备分离。色谱的微分质量平衡方程通过Rouchon算法求解。结果表明,随着核芯尺寸的增加,可以在分离中使用较大的颗粒,从而导致更高的适用流速和更短的循环时间。由于多孔层体积的减少,色谱柱的负载能力明显下降。结果,分离的生产率和经济性降低。结果表明,如果可以针对给定的分离任务优化固定相颗粒的尺寸,则核壳相的使用将无益。当目的是在小规模分离中用于通用(例如用于纯化不同产物的纯化)构建制备柱时,核壳相的使用被证明是有利的。 (C)2015 Elsevier B.V.保留所有权利。

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