Faller T, Engelhardt H
Institute of Instrumental and Environmental Analysis, University of the Saarland, Germany.
J Chromatogr A. 1999 Aug 20;853(1-2):83-94. doi: 10.1016/s0021-9673(99)00382-9.
The influence of experimental parameters on precision of migration times and accuracy of integration has been studied. The repeatability of migration times strongly depends on the proper selection of the rinse steps between each run of a CE system. The rinse steps have to be optimized additionally with each separation system. This is especially important for systems providing an anodic electroosmotic flow. The errors introduced by the integration software were studied by transferring the same data sets to different commercial available integration softwares. A strategy for the transfer of raw data files between several softwares is described. By using systems with identical peak areas or with identical peak heights it could be shown that the newly introduced softwares can cope better with the leading or tailing peaks. The RSD of quantitation strongly depends on the signal-to-noise ratio. At S/N ratios larger than 35 no differences between the various softwares studied could be observed. At lower S/N ratios the newly released softwares are to be preferred.
研究了实验参数对迁移时间精度和积分准确性的影响。迁移时间的重复性很大程度上取决于毛细管电泳(CE)系统每次运行之间冲洗步骤的正确选择。每次分离系统都必须额外优化冲洗步骤。这对于提供阳极电渗流的系统尤为重要。通过将相同的数据集传输到不同的商用积分软件,研究了积分软件引入的误差。描述了在几种软件之间传输原始数据文件的策略。通过使用具有相同峰面积或相同峰高的系统,可以表明新引入的软件能够更好地处理前沿峰或拖尾峰。定量的相对标准偏差(RSD)很大程度上取决于信噪比。在信噪比大于35时,未观察到所研究的各种软件之间存在差异。在较低的信噪比下,应优先选择新发布的软件。