• Title of article

    Very high pressure liquid chromatography using core-shell particles: Quantitative analysis of fast gradient separations without post-run times

  • Author/Authors

    Stankovich، نويسنده , , Joseph J. and Gritti، نويسنده , , Fabrice and Stevenson، نويسنده , , Paul G. and Beaver، نويسنده , , Lois A. and Guiochon، نويسنده , , Georges، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    10
  • From page
    99
  • To page
    108
  • Abstract
    Five methods for controlling the mobile phase flow rate for gradient elution analyses using very high pressure liquid chromatography (VHPLC) were tested to determine thermal stability of the column during rapid gradient separations. To obtain rapid separations, instruments are operated at high flow rates and high inlet pressure leading to uneven thermal effects across columns and additional time needed to restore thermal equilibrium between successive analyses. The purpose of this study is to investigate means to minimize thermal instability and obtain reliable results by measuring the reproducibility of the results of six replicate gradient separations of a nine component RPLC standard mixture under various experimental conditions with no post-run times. Gradient separations under different conditions were performed: constant flow rates, two sets of constant pressure operation, programmed flow constant pressure operation, and conditions which theoretically should yield a constant net heat loss at the columnʹs wall. The results show that using constant flow rates, programmed flow constant pressures, and constant heat loss at the columnʹs wall all provide reproducible separations. However, performing separations using a high constant pressure with programmed flow reduces the analysis time by 16% compared to constant flow rate methods. For the constant flow rate, programmed flow constant pressure, and constant wall heat experiments no equilibration time (post-run time) was required to obtain highly reproducible data
  • Keywords
    Constant pressure liquid chromatography , thermal equilibrium , Programmed flow conditions , Reproducibility of peak areas
  • Journal title
    Journal of Chromatography A
  • Serial Year
    2014
  • Journal title
    Journal of Chromatography A
  • Record number

    1515777