[1] | FELINGER A,GUIOCHON G.Computer simulations innon-linear chromatography[J].Tr A C.1995,14(1):6-10 | [2] | JACOBSON S,GOLSHAN-SHIRAZI S,GUIOCHON G.Chromatographic band profiles and band separation ofenantiomers at high concentration[J].J Am Chem Soc,1990,112(18):6 492-6 498. | [3] | KACZMARSKI K,MAZZOTTI M,STORTI G.Modelingfixed-bed adsorption columns through orthogonal collocationson moving finite elements[J].Comput Chem Eng.1997,21(6):641-660 | [4] | KACZMARSKI K,ANTOS D,SAJONZ H,et al.Comparative modeling of breakthrough curves of bovineserum albumin in anion-exchange chromatography[J].JChromatogr A.2001,925(1):1-17 | [5] | GAVAZZINI A,KACZMARSKI K,SZABELSKI P,et al.Modeling of the separation of the enantiomers of 1-phenyl-1-propanol on cellulose tribenzoate[J].Anal Chem,2001,73(23):5 704-5 715. | [6] | KACZMARSKI K,GUBERNAK M,GUIOCHON G,et al.Application of the general rate model with the Maxwell-Stefan equations for the prediction of the band profiles of the1-indanol enantiomers[J].Chem Eng Sci,2003,58(11):2 325-2 338. | [7] | RUTHVEN D M.Principles of Adsorption and AdsorptionProcesses[M].New York:Wiley,1984. | [8] | SUAUKI M.Adsorption Engineering[M].Amsterdam,theNetherlands:Elsevier,1990. | [9] | HEETER G A,LIAPIS A I.Frontal chromatography ofproteins:Effect of axial dispersion on column performance[J].J Chromatogr A,199.8,796(1):157-164. | [10] | MIYABE K,GUIOCHON G.Kinetic study of the masstransfer of bovine serum albumin in anion-exchangechromatography[J].J Chromatogr A.2000,866(2):147-171 | [11] | KACZMARSKI K,GAVAZZINI A,SZABELSKI P,et al.Application of the general rate model and the generalizedMaxwell-Stefan equation to the study of the mass transferkinetics of a pair of enantiomers[J].J Chromatogr A.2002,962(1):57-67 | [12] | ZHOU D M,CHERRAK D E,KACZMARSKI K,et al.Prediction of the band profiles of the mixtures of the 1-indanol enantiomers from data acquired with the singleracemic mixture[J].Chem Eng Sci,2003,58(14):3 257-3 272. | [13] | MORBIDELLI M,SERVIDA A,STORTI G,et al.Simulation of multicomponent adsorption beds.Modelanalysis and numerical solution[J].Ind Eng ChemFundam,1982,21(2):123-131. | [14] | MORBIDELLI M,STORTI G,CARRA S,et al.Study of aseparation process through adsorption of molecular sieves:Application to a chlorotoluene isomers mixture[J].ChemEng Sci,1984,39(3):383-393. | [15] | KACZMARSKI K,ANTOS D.Modified Rouchon andRouchon-like algorithms for solving different models ofmulticomponent preparative chromatography[J].JChromatogr A.1996,756(1):73-87 | [16] | CAVAZZINI A,BARDIN G,KACZMARSKI K,et al.Adsorption equilibria of butyl-and amylbenzene onmonolithic silica-based columns[J].J Chromatogr A.2002,957(2):111-126 | [17] | HAO W Q,WANG J D.Evaluation of nonlinearchromatographic performance by frontal analysis using asimple multi-plate mathematical model[J].J ChromatogrA,2005,1 063(1):47-56. | [18] | LISEC O,HUGO P,SEIDEL-MORGENSTERN A.Frontalanalysis method to determine competitive adsorptionisotherms[J].J Chromatogr A.2001,908(1):19-34 | [19] | MIYABE K,GUIOCHON G.Determination of the lumpedmass transfer rate coefficient by frontal analysis[J].JChromatogr A.2000,890(2):211-223 | [20] | ZHOU D M,KACZMARSKI K,GUIOCHON G.Comparison of the binary equilibrium isotherms of the 1-indanol enantiomers on three high-performance liquidchromatography columns of different sizes[J].J ChromatogrA.2003,1015(1):73-87 | [21] | FELINGER A,ZHOU D M,GUIOCHON G.Determinationof the single component and competitive adsorption isothermsof the 1-indanol enantiomers by the inverse method[J].JChromatogr A,2003,1 005(1):35-49. | [22] | FELINGER A,CAVAZZINI A,GUIOCHON G.Numericaldetermination of the competitive isotherm of enantiomers[J].J Chromatogr A.2003,986(2):207-225 | [23] | HAGGLUND I,STAHLBERG J.Ideal model ofchromatography applied to charged solutes in reversed-phaseliquid chromatography[J].J Chromatogr A.1997,761(1):3-11 | [24] | GRITTI F,FELINGER A,GUIOCHON G.Overloadedgradient elution chromatography on heterogeneous adsorbentsin reversed-phase liquid chromatography[J].J ChromatogrA,2003,1 017(1):45-61. | [25] | QUINONES I,GRILL C M,MILLER L,et al.Modelingof separations by closed-loop steady-state recyclingchromatography of a racemic pharmaceutical intermediate[J].J Chromatogr A.2000,867(1):1-21 | [26] | MIHLBACHLER K,JUPKE A,SEIDEL-MORGENSTERNA,et al.Effect of the homogeneity of the column set on theperformance of a simulated moving bed unit:��Experimental study[J]..J Chromatogr A.2002,944(1):3-22 | [27] | CHERRAK D E,KHATTABI S,GUIOCHON G.Adsorption behavior and prediction of the band profiles ofthe enantiomers of 3-chloro-1-phenyl-1-propanol influence ofthe mass transfer kinetics[J].J Chromatogr A.2000,877(1):109-122 | [28] | CAVAZZINI A,FELINGER A,KACZMARSKI K,et al.Study of the adsorption equilibria of the enantiomers of 1-phenyl-1-propanol on cellulose tribenzoate using a microborecolumn[J].J Chromatogr A.2002,953(1):55-66 | [29] | LIN B,GOLSHAN-SHIRAZI S,GUIOCHON G.Effect ofmass transfer coefficient on the elution profile in nonlinearchromatography[J].J Phys Chem,1989,93(8):3 363-3 368. | [30] | LIN B,YUN T,ZHONG G,et al.Shock layer analysis fora single-component in preparative elution chromatography[J].J Chromatogr A.1995,708(1):1-12 | [31] | FOMSTEDT T,ZHONG G M,BENSETITI Z,et al.Experimental and theoretical study of the adsorption behaviorand mass transfer kinetics of propranolol enantiomers oncellulose protein as the selector[J].Anal Chem,1996,68(14):2 370-2 378. | [32] | KHATTABI S,CHERRAK D E,FISCHER J,et al.Studyof the adsorption behavior of the enantiomers of 1-phenyl-1-propanol on a cellulose-based chiral stationary phase[J].JChromatogr A.2000,877(1):95-107 | [33] | DUAN G.CHING C B,SWARUP SKinetic andequilibrium study of the separation of propranololenantiomers by high performance liquid chromatography on achiral adsorbent[J]..Chem Eng J.1998,69(2):111-117 |
|