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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Metrics of separation performance in chromatography. Part 1. Definitions and application to static analyses
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Metrics of separation performance in chromatography. Part 1. Definitions and application to static analyses

机译:色谱分离性能的指标。第1部分。定义及其在静态分析中的应用

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摘要

Earlier introduced metrics of separation performance are described in a systematic way. After providing the definitions of the metrics suitable for a broad variety of applications, the study focuses on static analyses (isothermal GC, isocratic LC, etc.) and their general separation performance. Statistically expected number of resolved (adequately separated) single-component peaks is treated as the ultimate metric of general separation performance of chromatographic analysis. That number depends on the peak capacity of the analysis and the number of components in a test mixture. The peak capacity, in turn, depends on the separation capacity of a column and the lowest separation required by the data-analysis system for resolving poorly separated peaks. The separation capacity is a special case of a broader metric of the separation measure which is a function of column efficiency, solute separability, and the level of the solute interaction with a column stationary phase. The formulae for theoretical prediction of all these metrics for arbitrary pairs of peaks in static analyses are derived. To provide a better insight into the basic metrics of the separation performance, additional metrics such as the solute discrimination (relative difference in solute velocities), utilization of separability (solute discrimination per unit of their separability), specific separation (the separation per unit of separability), and others are defined and found for static analyses.
机译:较早介绍的分离性能指标是系统描述的。在提供了适用于各种应用的度量标准的定义之后,本研究着重于静态分析(等温气相色谱,等度液相色谱等)及其一般的分离性能。统计上预期的已解析(充分分离)的单组分峰数被视为色谱分析总体分离性能的最终标准。该数量取决于分析的峰容量和测试混合物中组分的数量。反过来,峰容量取决于色谱柱的分离容量以及数据分析系统解决分离不良峰所需的最低分离度。分离能力是更广泛的分离度量标准的特例,它是色谱柱效率,溶质可分离性以及与色谱柱固定相相互作用的溶质水平的函数。推导了用于静态分析中任意峰对的所有这些度量的理论预测公式。为了更好地了解分离性能的基本指标,还提供了其他指标,例如溶质判别(溶质速度的相对差异),可分离性的利用(可分离度的每单位溶质辨别力),比分离(每单位分离度)。可分离性),并定义了其他方法用于静态分析。

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