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Analysis of the temporal performance of one versus on-line comprehensive two-dimensional liquid chromatography

机译:一维在线综合二维液相色谱的时间性能分析

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Our purpose is to generalize the chief conclusion of earlier studies based on complex maize seed extract samples that indicated that at very short times (less than 5. min) the peak capacity of 1D liquid chromatography was better than that of comprehensive, on-line 2D liquid chromatography (LC. ×. LC), but that the LC. ×. LC method begins to out-perform the 1D method at surprisingly short analysis times of only 5-10. min. We call the analysis time at which the peak capacities of 1D and LC. ×. LC become equal the "crossover time." We quantify the importance of various system parameters such as the 1D peak capacity, the second dimension cycle time and second dimension peak capacity, and fractional coverage of the two-dimensional separation space on the crossover time of 1D versus LC. ×. LC chromatography. For ranges of these parameters used in our earlier experimental studies, we believe that crossover times will generally be between 3 and 8. min under optimized on-line LC. ×. LC conditions.
机译:我们的目的是概括基于复杂玉米种子提取物样品的早期研究的主要结论,该结论表明,在很短的时间内(不到5分钟),一维液相色谱的峰容量要优于全面在线二维的峰容量。液相色谱法(LC。×.LC),但表示LC。 ×。 LC方法仅在5-10的惊人短分析时间内就开始超越一维方法。分钟我们称分析时间为一维和液相色谱的峰容量。 ×。 LC等于“交叉时间”。我们量化了各种系统参数的重要性,例如一维峰容量,第二维循环时间和第二维峰容量,以及二维分离空间在一维与液相色谱交叉时间上的分数覆盖率。 ×。 LC色谱法。对于我们较早的实验研究中使用的这些参数的范围,我们认为在优化的在线LC下,交叉时间通常在3至8分钟之间。 ×。 LC条件。

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