[1] D.Z. Tscheng, Sialorrhea-therapeutic drug options, Ann. Pharmacother. 36(2002) 1785-1790.[2] V. Bajaj, J.A.A. Langtry, Use of oral glycopyrronium bromide in hyperhidrosis, Br. J. Dermatol. 157(2007) 118-121.[3] E. Toth-Sarudy, G. Toth, I. Pallagi, G. Seres, B. Vitalis, M. Tapfer, V. Perczel, I. Kurucz, N. Bodor, Z. Zubovics, Preparation and biological effects of pure stereoisomeric novel soft anticholinergics, Pharmazie 61(2006) 90-96.[4] S.E. Schaus, B.D. Brandes, J.F. Larrow, M. Tokunaga, K.B. Hansen, A.E. Gould, M.E. Furrow, E.N. Jacobsen, Highly selective hydrolytic kinetic resolution of terminal epoxides catalyzed by chiral (salen)CoⅢ complexes. Practical synthesis of enantioenriched terminal epoxides and 1,2-diols, J. Am. Chem. Soc. 124(2002) 1307-1315.[5] S.K. Tulashie, H. Lorenz, A. Seidel-Morgenstern, Solubility of mandelic acid enantiomers and their mixtures in three chiral solvents, J. Chem. Eng. Data 55(2010) 5196-5200.[6] V. Schurig, Separation of enantiomers by gas chromatography, J. Chromatogr. A 906(2001) 275-299.[7] T. Yu, Y.X. Du, B. Chen, Evaluation of clarithromycin lactobionate as a novel chiral selector for enantiomeric separation of basic drugs in capillary electrophoresis, Electrophoresis 32(2011) 1898-1905.[8] Q. Ferreira, I.M. Coelhoso, N. Ramalhete, H.M.C. Marques, Resolution of racemic propranolol in liquid membranes containing TA-β-cyclodextrin, Sep. Sci. Technol. 41(2006) 3553-3568.[9] A. Holbach, J. Godde, R. Mahendrarajah, N. Kockmann, Enantioseparation of chiral aromatic acids in process intensified liquid-liquid extraction columns, AIChE J. 61(2015) 266-276.[10] M. Steensma, N.J.M. Kuipers, A.B. de Haan, G. Kwant, Modelling and experimental evaluation of reaction kinetics in reactive extraction for chiral separation of amines, amino acids and amino-alcohols, Chem. Eng. Sci. 62(2007) 1395-1407.[11] B. Schuur, J.G.M. Winkelman, H.J. Heeres, Equilibrium studies on enantioselective liquid-liquid amino acid extraction using a cinchona alkaloid extractant, Ind. Eng. Chem. Res. 47(2008) 10027-10033.[12] K.W. Tang, J. Cai, P.L. Zhang, Equilibrium and kinetics of reactive extraction of ibuprofen enantiomers from organic solution by hydroxypropyl-β-cyclodextrin, Ind. Eng. Chem. Res. 51(2012) 964-971.[13] K.W. Tang, P.L. Zhang, C.Y. Pan, H.J. Li, Equilibrium studies on enantioselective extraction of oxybutynin enantiomers by hydropholic β-cyclodextren derivatives, AIChE J. 57(2011) 3027-3036.[14] F. Jiao, X. Chen, W. Hu, F. Ning, K. Huang, Enantioselective extraction of mandelic acid enantiomers by L-dipentyl tartrate and β-cyclodextrin as binary chiral selectors, Chem. Pap. 61(2007) 326-328.[15] F.A. Poposka, K. Nikolovski, R. Tomovska, Kinetics, mechanism and mathematical modelling of extraction of citric acid with isodecanol/nparaffins solutions of trioctylamine, Chem. Eng. Sci. 53(1998) 3227-3237.[16] M.I. Saleh, M.F. Bari, M.S. Jab, B. Saad, Kinetics of lanthanum(Ⅲ) extraction from nitrate-acetato medium by Cyanex 272 in toluene using the single drop technique, Hydrometallurgy 67(2002) 45-52.[17] N.E. EI-Hefny, S. EI-Dessouky, Equilibrium and kinetic studies on the extraction of gadolinium(Ⅲ) from nitrate medium by di-2-ethylhexylphosphoric acid in kerosene using a single drop technique, J. Chem. Technol. Biotechnol. 81(2006) 394-400.[18] Y. Yulizar, A. Ohashi, H. Nagatani, H. Watarai, Kinetic study of Ni(Ⅱ) and Zn(Ⅱ) complexation with a pyridylazo extractant by a centrifugal liquid membrane method, Anal. Chim. Acta 419(2000) 107-114.[19] H. Nagatani, H. Watarai, Direct spectrophotometric measurement of demetalation kinetics of 5,10,15,20-tetraphenylporphyrinatozinc(Ⅱ) at the liquid-liquid interface by a centrifugal liquid membrane method, Anal. Chem. 70(1998) 2860-2865.[20] D. Ciceri, L.R. Mason, D.J.E. Hervie, J.M. Perera, G.W. Stevens, Modelling of interfacial mass transfer in microfluidic solvent extraction:part Ⅱ. Heterogeneous transport with chemical reaction, Microfluid. Nanofluid. 14(2013) 213-224.[21] K.W. Tang, J.B. Miao, T. Zhou, Y.B. Liu, L.T. Song, Reaction kinetics in reactive extraction for chiral separation of α-cyclohexyl-mandelic acid enantiomers with hydroxypropyl-β-cyclodextrin, Chem. Eng. Sci. 66(2011) 397-404.[22] J.C. Mailen, D.E. Eorner, S.E. Dorris, N. Pih, S.M. Robinson, R.G. Yates, Solvent extraction chemistry and kinetics of zirconium, Sep. Sci. Technol. 15(1980) 959-973.[23] K.L. Wasewar, A.B.M. Heesink, G.F. Versteeg, V.G. Pangarkar, Reactive extraction of lactic acid using alamine 336 in MIBK:Equilibria and kinetics, J. Biotechnol. 97(2002) 59-68.[24] M.M. Bora, S. Borthakur, P.G. Rao, N.N. Dutta, Study on the reactive extraction and stripping kinetics of certain β-lactam antibiotics, Chem. Eng. Process. 47(2008) 1-8.[25] P.L. Zhang, J.J. Luo, K.W. Tang, J.M. Yi, C.A. Yang, Kinetics study on reactive extraction of D-p-hydroxyphenylglycine by BINAP-palladium complex in Lewis cell, Chem. Eng. Process. 93(2002) 50-55.[26] K.W. Tang, X.F. Feng, P.L. Zhang, W.F. Xu, Experimental and model study on separation of α-Cyclopentylmandelic acid enantiomers by liquid-liquid extraction, J. Chem. Eng. Data 61(2016) 3090-3097.[27] L.K. Doraiswamy, M.M. Sharma, Heterogeneous Reactions:Analysis Examples and Reactor Design, Fluid-Fluid-Solid Reactions, 2, John Wiley and Sons Ltd, New York 1984, pp. 17-45.[28] S.Q. Tong, H. Zhang, M.M. Shen, Y. Ito, J.Z. Yan, Application and comparison of high-speed countercurrent chromatography and high performance liquid chromatography in preparative enantioseparation of α-substitution mandelic acids, Sep. Sci. Technol. 50(2015) 735-743.[29] T. Higuchi, K.A. Connors, Phase solubility techniques, Adv. Anal. Chem. Instrum. 4(1965) 117-212.[30] J. Mohanty, A.C. Bhasikuttan, W.M. Nau, H. Pal, Host-guest complexation of neutral red with macrocyclic host molecules:Contrasting pKa shifts and binding affinities for cucurbit[7] uril and β-cyclodextrin, J. Phys. Chem. B 110(2006) 5132-5138. |