Gradient Elution Chromatography

J. Dolan, L. Snyder
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引用次数: 1

Abstract

Elution chromatography can be carried out in either isocratic or gradient modes. In isocratic elution, the mobile-phase composition is held constant during separation of the sample, e.g. 60% v acetonitrile–water. In gradient elution, the mobile-phase composition will be varied during sample separation, e.g. changing from 0 to 100% v acetonitrile–water. Gradient elution requires special chromatographic equipment, as well as somewhat greater care on the part of the operator, but it has important advantages for many separations. Thus, in isocratic elution (Figure 1a), sample peaks tend to “bunch up” at the beginning of the chromatogram (often with decreased resolution) and to broaden at the end of the chromatogram (with reduced detection sensitivity). Gradient elution (Figure 1b), on the other hand, provides a more even spacing of peaks, similar widths throughout the chromatogram, and often a shorter run time. For these and other reasons, gradient elution is preferred for the separation of many samples.
梯度洗脱色谱法
洗脱色谱可以在等温或梯度模式下进行。在等温洗脱中,样品分离过程中流动相组成保持恒定,例如60% v乙腈-水。在梯度洗脱中,流动相组成在样品分离过程中会发生变化,例如从0到100% v乙腈-水。梯度洗脱需要特殊的色谱设备,也需要操作人员更加小心,但它对许多分离都有重要的优点。因此,在等密度洗脱中(图1a),样品峰在色谱开始时趋向于“聚集”(通常分辨率降低),并在色谱结束时变宽(检测灵敏度降低)。另一方面,梯度洗脱(图1b)提供了更均匀的峰间距,整个色谱图的宽度相似,并且通常运行时间更短。由于这些和其他原因,梯度洗脱是许多样品分离的首选方法。
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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