Evaluation of PGC Stationary Phases Under High-Temperature LC Conditions for the Analysis of Parabens in Food Samples

Roberta La Tella, Francesca Rigano, Clinton R. Corman, Gabriel A. Odugbesi, P. Donato, P. Dugo, L. Mondello
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引用次数: 1

Abstract

Porous graphitic carbon (PGC) columns for liquid chromatography (LC) represent an alternative to octadecyl‑bonded silica columns for the separation of both polar and nonpolar molecules. This is accomplished by exploiting the polarizability of the stationary phase interacting with the functional groups of the analytes. However, the elution of nonpolar compounds requires a high percentage of organic solvent, losing the intrinsic advantage of reversed‑phase aqueous separations. In this article, we aimed to exploit an additional advantage of such columns, viz. the resistance at high temperatures. Superheated water was employed as the mobile phase, taking advantage of the decrease in water dielectric constant by increasing the temperature. In this context, our goal was to minimize the percentage of organic solvent utilizing high temperatures (up to 250 °C) to achieve fast and “green” separations. The new developed high-temperature LC instrument was applied to the analysis of parabens in food samples.
高温LC条件下PGC固定相分析食品样品中对羟基苯甲酸酯的评价
用于液相色谱(LC)的多孔石墨碳(PGC)柱代表了十八烷基键合二氧化硅柱分离极性和非极性分子的替代方法。这是通过利用与分析物官能团相互作用的固定相的极化性来完成的。然而,非极性化合物的洗脱需要高比例的有机溶剂,失去了反相水分离的固有优势。在本文中,我们的目的是利用这种柱的另一个优势,即在高温下的电阻。采用过热水作为流动相,利用温度升高使水介电常数降低的优势。在这种情况下,我们的目标是利用高温(高达250°C)最大限度地减少有机溶剂的百分比,以实现快速和“绿色”分离。将新研制的高温液相色谱仪应用于食品样品中对羟基苯甲酸酯的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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