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Characters of the Plateau of Methanol Increment in Frontal Analysis in Reversed Phase Liquid Chromatography
作者姓名:耿信笃  弗莱德依瑞格涅尔
作者单位:GENG,Xin Du REGNIER,Fred E aInstitute of Modern Separation Science,Northwest University,Xi'an,Shaanxi 710069,China bDepartment of Chemistry,Purdue University,West Lafayette,IN 47907,USA
基金项目:ProjectsupportedbytheNationalNaturalScienceFoundationofChina (Nos.39880 0 0 3and 2 0 175 0 16 )
摘    要:With insulin methanol-water,and the ion-pairing agent,hydrochloric acid and trifluroacetic acid(TEA),the character of the first plateau(FP)on the elution curve of frontal analysis in reversed phase liquid chromatography(RPLC)was investigated by on-line UV-spectrometry and identified with nuclear magnetic resonance(NMR) spectrometry and mass spectrometry.The profile of the FP is the same as that of a usual elution curve of methanol in frontal analysis(FA).When the insulin concentration was limited to a certain range,the height of the FP was found to be proportional to the insulin concentration in mobile phase and its length companying to shorten,The FP profile on the intersection of two tangents reflects the components of the microstructure in the depth direction of the bonded stationary phase layer and the desorption dynamics of the displaced components.The displaced methanol was quantitatively determined by NMR and on-line UV spectrometries.TFA with high UV absorbance can not be used as an ionpairing agent for the investigation of the FP in RPLC,but if can be used as a good marker to investigate the complicated transfer process of components in the stationary phase in RPLC.A stoichiometric displacement process between solute and solvent was proved to be valid in both usual and FA in RPLC.From the point of view of dynamics of mass transfer, the solutes can only contact to the surface of stationary phase in usual RPLC,while solute can penetrate into it in FA of RPLC.The solvation of insulin in methanol and water solution as an example indicating the usage of the FP in the FA was also investigated in this paper.

关 键 词:反相流相色谱  RPLC  核磁共振  甲醇  前沿分析

Characters of the Plateau of Methanol Increment in Frontal Analysis in Reversed Phase Liquid Chromatography
GENG,Xin Du REGNIER,Fred E aInstitute of Modern Separation Science,Northwest University,Xi'an,Shaanxi ,China b.Characters of the Plateau of Methanol Increment in Frontal Analysis in Reversed Phase Liquid Chromatography[J].Chinese Journal of Chemistry,2002,20(5):431-440.
Authors:GENG  Xin Du REGNIER  Fred E aInstitute of Modern Separation Science  Northwest University  Xi'an  Shaanxi  China b
Institution:GENG,Xin Du REGNIER,Fred E aInstitute of Modern Separation Science,Northwest University,Xi'an,Shaanxi 710069,China bDepartment of Chemistry,Purdue University,West Lafayette,IN 47907,USA
Abstract:With insulin methanol water, and the ion pairing agent, hydrochloric acid and trifluroacetic acid (TFA), the character of the first plateau (FP) on the elution curve of frontal analysis in reversed phase liquid chromatography (RPLC) was investigated by on line UV spectrometry and identified with nuclear magnetic resonance (NMR) spectrometry and mass spectrometry. The profile of the FP is the same as that of a usual elution curve of methanol in frontal analysis (FA). When the insulin concentration was limited to a certain range, the height of the FP was found to be proportional to the insulin concentration in mobile phase and its length companying to shorten. The FP profile on the intersection of two tangents reflects the components of the microstructure in the depth direction of the bonded stationary phase layer and the desorption dynamics of the displaced components. The displaced methanol was quantitatively determined by NMR and on line UV spectrometries. TFA with high UV absorbance can not be used as an ion pairing agent for the investigation of the FP in RPLC, but it can be used as a good marker to investigate the complicated transfer process of components in the stationary phase in RPLC. A stoichiometric displacement process between solute and solvent was proved to be valid in both usual and FA in RPLC. From the point of view of dynamics of mass transfer, the solutes can only contact to the surface of stationary phase in usual RPLC, while solute can penetrate into it in FA of RPLC. The solvation of insulin in methanol and water solution as an example indicating the usage of the FP in the FA was also investigated in this paper.
Keywords:displacement mechanism  frontal analysis  ion  pairing agent  methanol increment  partition mechanism  reversed phase liquid chromatography
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