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在梯度液相色谱中,溶剂混合以及轴向扩散等因素会使梯度曲线发生变形,而这在阶梯梯度以及高斜率的线性梯度中表现得尤为明显。本文探讨了这种梯度曲线变形对色谱峰宽的影响。首先以 C18色谱柱为固定相,甲醇-水为流动相,联苯和苯乙酮为样品,测得不同线性梯度和阶梯梯度条件下的色谱峰。然后以205 nm 为检测波长,记录相应条件下未接色谱柱时甲醇的响应值,得到柱入口处的梯度曲线。接着根据所设定的梯度条件以及柱入口处测得的梯度曲线,分别计算相应情形中色谱峰宽的理论值,将其与实验值进行了比较。研究结果表明,梯度曲线的变形会对色谱峰宽产生影响。当将这种影响考虑在内后,理论值与实验值更为吻合。

In gradient liquid chromatography,the gradient profile may be distorted because of the effects of solvent mixing and axial dispersion. Such effects will be significant especially when stepwise gradient and linear gradient with high slope are applied. In this work,we dis-cussed the influence of the distortion of gradient profile on the peak width. Firstly,the chroma-tographic peaks were measured under linear and stepwise gradient conditions where a C18 col-umn was used as the stationary phase,a mixture of methanol and water as the mobile phase, and biphenyl and acetophenone as the samples. Then,the response of methanol under corre-sponding conditions was recorded by disconnecting the column and the detection wavelength was set at 205 nm. The gradient profile at the column inlet was calculated from the methanol response profile. The theoretical values of the peak width were calculated from the set gradient profile and the gradient profile obtained at the column inlet respectively. The theoretical values were compared with the experimental ones. It is shown that the distortion of gradient profile does affect the peak width. When such influence is taken into account,the theoretical and experimental values of the peak width are well consistent.

参考文献

[1] 朱永哲;冯雅男;金正汉.超高效液相色谱-串联质谱法同时测定土壤中239种农药的残留量[J].色谱,2013(9):850-861.
[2] Wiczling P;Kaliszan R.[J].Analytical Chemistry,201082(9):3692.
[3] Zisi C;Fasoula S;Nikitas P.[J].ANALYST,2013138:3771.
[4] Hao WQ;Zhang XM;Hou KY.Analytical solutions of the ideal model for gradient liquid chromatography[J].Analytical chemistry,200622(22):7828-7840.
[5] Hao WQ;Zhang XM;Hu FL.Analysis of the ideal model for a single component in preparative gradient elution chromatography[J].Analytical chemistry,20076(6):2507-2517.
[6] Poppe H;Paanakker J;Bronckhorst M.[J].Journal of Chromatography,1981204:77.
[7] Gritti F;Guiochon G.The bandwidth in gradient elution chromatography with a retained organic modifier[J].Journal of chromatography, A: Including electrophoresis and other separation methods,20071/2(1/2):67-82.
[8] Gritti, F;Guiochon, G.Exact peak compression factor in linear gradient elution I. Theory[J].Journal of Chromatography. A,20081/2(1/2):35-40.
[9] Gritti F;Guiochon G.The ultimate band compression factor in gradient elution chromatography[J].Journal of chromatography, A: Including electrophoresis and other separation methods,20081/2(1/2):79-91.
[10] Gritti, F;Guiochon, G.Peak compression factor of proteins[J].Journal of chromatography, A: Including electrophoresis and other separation methods,200933(33):6124-6133.
[11] Hao W Q;Di B;Chen Q.[J].Journal of Chromatography A,20131295:67.
[12] Hao W Q;Di B;Chen Q.[J].Journal of Chromatography A,20141369:191.
[13] 孙小丽;郝卫强;王俊德;狄斌;陈强;庄韦;俞强;张培培.梯度液相色谱保留时间公式在梯形梯度洗脱研究中的应用[J].色谱,2013(8):753-757.
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