Gritti Fabrice, McDonald Thomas, Gilar Martin
Waters Corporation, Milford, MA 01157, USA.
Waters Corporation, Milford, MA 01157, USA.
J Chromatogr A. 2015 Nov 13;1420:54-65. doi: 10.1016/j.chroma.2015.09.079. Epub 2015 Sep 28.
The impact of the column hardware volume (≃ 1.7 μL) on the optimum reduced plate heights of a series of short 2.1 mm × 50 mm columns (hold-up volume ≃ 80-90 μL) packed with 1.8 μm HSS-T3, 1.7 μm BEH-C18, 1.7 μm CSH-C18, 1.6 μm CORTECS-C18+, and 1.7 μm BEH-C4 particles was investigated. A rapid and non-invasive method based on the reduction of the system dispersion (to only 0.15 μL(2)) of an I-class Acquity system and on the corrected plate heights (for system dispersion) of five weakly retained n-alkanophenones in RPLC was proposed. Evidence for sample dispersion through the column hardware volume was also revealed from the experimental plot of the peak capacities for smooth linear gradients versus the corrected efficiency of a weakly retained alkanophenone (isocratic runs). The plot is built for a constant gradient steepness irrespective of the applied flow rates (0.01-0.30 mL/min) and column lengths (2, 3, 5, and 10 cm). The volume variance caused by column endfittings and frits was estimated in between 0.1 and 0.7 μL(2) depending on the applied flow rate. After correction for system and hardware dispersion, the minimum reduced plate heights of short (5 cm) and narrow-bore (2.1mm i.d.) beds packed with sub-2 μm fully and superficially porous particles were found close to 1.5 and 0.7, respectively, instead of the classical h values of 2.0 and 1.4 for the whole column assembly.
研究了柱硬件体积(约1.7μL)对一系列短的2.1 mm×50 mm色谱柱(死体积约80 - 90μL)的最佳折合塔板高度的影响,这些色谱柱填充有1.8μm HSS - T3、1.7μm BEH - C18、1.7μm CSH - C18、1.6μm CORTECS - C18 +和1.7μm BEH - C4颗粒。提出了一种基于降低I级Acquity系统的系统分散度(仅降至0.15μL²)以及基于反相液相色谱中五种弱保留正链烷酮的校正塔板高度(针对系统分散度)的快速且非侵入性的方法。通过平滑线性梯度的峰容量与弱保留烷酮的校正效率(等度运行)的实验图,也揭示了样品通过柱硬件体积的分散证据。该图是针对恒定的梯度陡度构建的,与所应用的流速(0.01 - 0.30 mL/min)和柱长(2、3、5和10 cm)无关。根据所应用的流速,柱端配件和筛板引起的体积方差估计在0.1至0.7μL²之间。在校正系统和硬件分散度后,发现填充有亚2μm全多孔和表面多孔颗粒的短(5 cm)窄内径(2.1 mm内径)柱床的最小折合塔板高度分别接近1.5和0.7,而不是整个色谱柱组件的经典h值2.0和1.4。