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首页> 外文期刊>Chromatographia >SFC Instrument Modification to Allow Greater Flexibility in Method Development by Generating Mixtures of Solvents and Modifiers On-Line for Mobile Phase B Optimization
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SFC Instrument Modification to Allow Greater Flexibility in Method Development by Generating Mixtures of Solvents and Modifiers On-Line for Mobile Phase B Optimization

机译:SFC仪器的改进,可通过在线生成溶剂和改性剂的混合物以实现流动相B优化,从而在方法开发中提供更大的灵活性

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A binary supercritical fluid chromatography (SFC) system was further modified by the addition of a quaternary HPLC pump. The flow outlet of this pump was connected to the flow inlet of the existing modifier pump (“pump B”) by way of a custom-designed reservoir in such a way that blends of methanol with up to three additional solvents and/or additives could be delivered to pump B on-the-fly. Small amounts of modifiers (0.1–5 %) are typically mixed with mobile phase B in SFC to improve either the peak shape or to optimize the selectivity of the separation. As the critical influence of these modifiers on the separation of complex mixtures cannot a priori be predicted, incremental changes in mobile phase B compositions typically have to be evaluated on a trial-and-error basis. The instrumental modifications described in this paper eliminate the need to prepare these combinations off-line and the concomitant time requirement to re-purge supply and de-gasser solvent lines with each change in composition. By eliminating these steps, a significantly decrease in the overall SFC method development time can be achieved. Furthermore, such an on-line arrangement allows for greater flexibility in method development, that is, in the “fine-tuning” of the method once the stationary phase and gradient conditions have been established.
机译:通过添加四元HPLC泵进一步改进了二元超临界流体色谱(SFC)系统。该泵的流量出口通过定制设计的储液器连接到现有调节泵(“泵B”)的流量入口,使得甲醇与最多三种其他溶剂和/或添加剂的混合物可以即时传送到泵B。通常在SFC中将少量的改性剂(0.1–5%)与流动相B混合,以改善峰形或优化分离的选择性。由于无法预先预测这些改性剂对复杂混合物分离的关键影响,因此通常必须基于反复试验评估流动相B组成的增量变化。本文所述的仪器改进消除了离线准备这些组合的需要,并消除了每次更换成分时重新吹扫进料和脱气溶剂管线的时间要求。通过消除这些步骤,可以大大减少整个SFC方法开发时间。此外,这样的在线布置在方法开发中,即一旦建立了固定相和梯度条件,即在方法的“微调”中允许更大的灵活性。

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