Advachrom, P.O. Box 1243, Wilmington, DE, 19801, USA.
J Chromatogr A. 2019 Aug 16;1599:35-45. doi: 10.1016/j.chroma.2019.03.057. Epub 2019 Apr 15.
What is known in the literature as the fundamental equation for gradient elution (FEGE) was previously proven only for conventional gradient LC - uniform (the same at any distance from the inlet) static (fixed in time) solvent velocity (u) in a column of uniform and static internal structure, cross-section and thermodynamic properties. A published alternative to the FEGE - the general migration equation - is valid for any column-based linear chromatography (GC, LC, SFC etc.). It allows one to theoretically or numerically predict a solute migration time to any location along the column. Starting from that general equation, several migration equations in gradient LC under different operational conditions including non-uniform non-static u, Neue-Kuss retention model and others have been developed in this report. It has been shown that the conditions of validity of the FEGE can be expanded to include non-uniform u. On the other hand, the FEGE is not valid for other unconventional operations of LC including gradient LC with dynamic (changing in time) u. This implies that FEGE cannot be applied to, e.g., gradient LC operating at constant pressure where, due to the change in solvent composition, the solvent viscosity changes causing the change in u with time. Applications of newly developed equations to other unconventional operations of gradient LC were also considered. Several new time parameters of the mobile phase flow were identified, interpreted, and evaluated.
在文献中被称为梯度洗脱基本方程(FEGE)的公式之前仅被证明适用于传统的梯度 LC - 均匀(在距入口的任何距离处相同)静态(时间固定)溶剂速度(u)在均匀和静态内部结构、横截面和热力学性质的柱中。FEGE 的替代方案 - 通用迁移方程 - 适用于任何基于柱的线性色谱(GC、LC、SFC 等)。它允许人们从理论上或数值上预测溶质在柱上任何位置的迁移时间。从该通用方程出发,在不同操作条件下(包括非均匀非静态 u、Neue-Kuss 保留模型等)在梯度 LC 中开发了几个迁移方程。结果表明,FEGE 的有效性条件可以扩展到包括非均匀 u。另一方面,FEGE 不适用于 LC 的其他非常规操作,包括具有动态(随时间变化)u 的梯度 LC。这意味着 FEGE 不能应用于例如在恒定压力下运行的梯度 LC,由于溶剂组成的变化,溶剂粘度随时间变化导致 u 随时间变化。还考虑了新开发的方程在梯度 LC 的其他非常规操作中的应用。确定、解释和评估了几个新的流动相流动时间参数。