首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Relative importance of column and adsorption parameters on the productivity in preparative liquid chromatography II: Investigation of separation systems with competitive Langmuir adsorption isotherms
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Relative importance of column and adsorption parameters on the productivity in preparative liquid chromatography II: Investigation of separation systems with competitive Langmuir adsorption isotherms

机译:制备液相色谱中色谱柱和吸附参数对生产率的相对重要性II:具有竞争性Langmuir吸附等温线的分离系统的研究

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In this study we investigated how the maximum productivity for commonly used, realistic separation system with a competitive Langmuir adsorption isotherm is affected by changes in column length, packing particle size, mobile phase viscosity, maximum allowed column pressure, column efficiency, sample concentration/solubility, selectivity, monolayer saturation capacity and retention factor of the first eluting compound. The study was performed by generating 1000 random separation systems whose optimal injection volume was determined, i.e., the injection volume that gives the largest achievable productivity. The relative changes in largest achievable productivity when one of the parameters above changes was then studied for each system and the productivity changes for all systems were presented as distributions. We found that it is almost always beneficial to use shorter columns with high pressure drops over the column and that the selectivity should be greater than 2. However, the sample concentration and column efficiency have very limited effect on the maximum productivity. The effect of packing particle size depends on the flow rate limiting factor. If the pumps maximum flow rate is the limiting factor use smaller packing, but if the pressure of the system is the limiting factor use larger packing up to about 40 μm.
机译:在这项研究中,我们研究了具有竞争性Langmuir吸附等温线的常用,现实的分离系统的最大生产率如何受到色谱柱长度,填料粒径,流动相粘度,最大允许色谱柱压力,色谱柱效率,样品浓度/溶解度的变化的影响,选择性,第一层洗脱化合物的单层饱和容量和保留因子。该研究是通过生成1000个随机分离系统进行的,该系统确定了最佳进样量,即可获得最大生产率的进样量。然后针对每个系统研究上述变化之一的参数时最大可实现生产率的相对变化,并将所有系统的生产率变化表示为分布。我们发现,使用较短的色谱柱在色谱柱上产生高压降几乎总是有益的,并且选择性应大于2。但是,样品浓度和色谱柱效率对最大生产率的影响非常有限。填料粒径的影响取决于流速限制因素。如果泵的最大流量是限制因素,则使用较小的填料,而如果系统的压力是限制因素,则使用较大的填料,最大约40μm。

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