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首页> 外文期刊>Journal of separation science. >Method to predict the bandwidth of elution profile under the linear gradient elution in reversed-phase HPLC
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Method to predict the bandwidth of elution profile under the linear gradient elution in reversed-phase HPLC

机译:反相HPLC中线性梯度洗脱预测洗脱谱带宽的方法。

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Solute migration in a chromatographic column is an important consideration when designing batch or continuous chromatographic separation processes. Most design methods for the chromatographic processes are based on the equilibrium theory which concerns only the migration velocity of the solute. However, in real case; it is important to predict the zone spreading which occurs by axial dispersion and mass transfer resistance. To predict the actual solute profiles in the column or effluent stream, numerical methods to solve nonlinear partial differential equations have been used. However, these methods involve much time and expense. In this work, two different rate factors are considered to predict the characteristics of the solute profiles. The first is solute migration velocity and the second is the zone spreading rate. The zone spreading rate can be estimated by the apparent axial dispersion coefficient which is obtained from the height of the equivalent theoretical plate in particular. Four benzene derivatives (benzene, toluene, p-xylene, and acetophenone) were used as model solutes, and two mobile phase systems, water/methanol and water/ACN, were used in RP-HPLC. The bandwidths and retention times of the solutes were predicted under several linear gradient conditions. The predicted and experimental bandwidths and retention times showed good agreement.
机译:在设计批量或连续色谱分离过程时,色谱柱中的溶质迁移是一个重要的考虑因素。色谱过程的大多数设计方法都是基于平衡理论,该平衡理论仅涉及溶质的迁移速度。但是,在实际情况下;重要的是预测由轴向扩散和传质阻力引起的区域扩展。为了预测塔或流出物流中的实际溶质分布,已使用求解非线性偏微分方程的数值方法。但是,这些方法需要大量时间和费用。在这项工作中,考虑了两个不同的速率因子来预测溶质曲线的特征。第一个是溶质迁移速度,第二个是区域扩展速率。区域扩展率可以通过视在轴向分散系数来估算,该表观轴向分散系数尤其是从等效理论板的高度获得的。四种苯衍生物(苯,甲苯,对二甲苯和苯乙酮)用作模型溶质,RP-HPLC中使用两种流动相系统水/甲醇和水/ ACN。在几种线性梯度条件下预测了溶质的带宽和保留时间。预测的带宽和实验带宽以及保留时间显示出良好的一致性。

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