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Heart-Cut Two-Dimensional Countercurrent Chromatography with a Single Instrument

机译:使用单个仪器进行心切二维逆流色谱

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Countercurrent chromatography (CCC) is a separation technique based on the liquid liquid partitioning of compounds between the two phases of a biphasic solvent system. Limitations in the separation efficiency and peak capacity of one-dimensional (1D) CCC often result in insufficiently resolved peaks. Therefore, partially resolved peak fractions have to be rechromatographed in order to improve the yield and purity. Additional solvent evaporation steps can be circumvented by the application of two-dimensional CCC (2D CCC). Existing 2D CCC configurations are based on the linking of two CCC instruments which are not readily available in every laboratory. In this study, we introduce a technical improvement which allows performing multiple heart-cuts and 2D CCC separations with one instrument which has up to four independent coils, one pump, and one detector. For this purpose, we modified a commercially available CCC system by the addition of three six-port selection valves and a T-piece. The applicability of the 2D CCC system was shown under overloading conditions with eight alkyl hydroxybenzoates with nonideal conditions. We used two solvent systems which were hydrodynamically compatible and which showed different selectively characteristics with regard to the compounds. Four unresolved compounds in the first dimension were baseline resolved by means of the heart-cut technique, in which between 4 and 9 mL of the flow from coil 1 was transferred to coil 2. Three successive heart-cuts were performed that led to baseline resolution of unresolved compounds in the first dimension. The obtained recovery rates were 94-100%, and the purities of the compounds as determined by GC/MS were 90-100%.
机译:逆流色谱法(CCC)是一种基于化合物在两相溶剂系统的两相之间的液-液分配的分离技术。一维(1D)CCC分离效率和峰容量的限制通常会导致峰分离度不足。因此,必须对部分分离的峰馏分进行重层析,以提高收率和纯度。二维CCC(2D CCC)的应用可以避免其他溶剂蒸发步骤。现有的2D CCC配置基于两个CCC仪器的链接,而这两个仪器在每个实验室中都不容易获得。在这项研究中,我们介绍了一项技术改进,该技术允许使用一台仪器进行多次心脏切割和2D CCC分离,该仪器最多具有四个独立线圈,一个泵和一个检测器。为此,我们通过添加三个六通选择阀和一个T型件,修改了商用CCC系统。二维CCC系统的适用性在非理想条件下用八种羟基苯甲酸烷基酯超载条件下显示。我们使用了两种流体动力学兼容的溶剂系统,这些溶剂系统对这些化合物表现出不同的选择性特征。通过心切技术将第一维中的四种未分离化合物进行基线分离,其中将来自线圈1的4至9 mL流量转移到线圈2。进行了连续三次心切,从而获得了基线分辨率第一维中未解析的化合物的数量。获得的回收率为94-100%,通过GC / MS测定的化合物纯度为90-100%。

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