[1] X.M. Cui, Y. Nie, Supply/demand situation and development prospect of MDI at home and abroad, Chem. Ind. 33(2) (2015) 53-57(in Chinese).
[2] O. Kreye, H.Mutlu,M.A.Meier, Sustainable routes to polyurethane precursors, Green Chem. 15(6) (2013) 1431-1455.
[3] F. Paul, Catalytic synthesis of isocyanates or carbamates from nitroaromatics using group VIII transition metal catalysts. Coordin, Chem. Rev. 203(2000) 269-323.
[4] H.L. An, L.L. Zhang, B.G. Yuan, X.Q. Zhao, Y.J. Wang, Influence of solvent on reaction path to synthesis of methyl N-phenyl carbamate from aniline, CO2 and methanol, Chin. J. Chem. Eng. 22(5) (2014) 607-610.
[5] F. Li,W.B. Li, J. Li,W. Xue, Y.J.Wang, X.Q. Zhao, Investigation of supported Zn(OAc)2 catalyst and its stability in N-phenyl carbamate synthesis, Appl. Catal. A Gen. 475(2014) 355-362.
[6] Y. Wang, B. Liu, Efficient and recyclable heterogeneous zinc alkyl carboxylate catalyst for the synthesis of N-phenyl carbamate from aniline and dimethylcarbonate, Catal. Sci. Technol. 5(1) (2015) 109-113.
[7] B. Zhao, S.J. Yao, H.L. An, X.Q. Zhao, Y.J.Wang, One-pot synthesis ofmethyl N-phenyl carbamate from aniline, carbon dioxide and methanol, J. Chem. Technol. Biotechnol. 89(10) (2014) 1553-1558.
[8] M.S. Yalfani, G. Lolli, T.E. Müller, A. Wolf, L. Mleczko, Methyl N-phenyl carbamate synthesis from aniline and methyl formate:Carbon recycling to chemical products, ChemSusChem 8(3) (2015) 443-447.
[9] D.H. Xu, H.Q. Li, Z.B. Li, Determination and modeling of isobaric vapor-liquid equilibria for the methylcarbamate+methyl-N-phenyl carbamate system at different pressures, J. Chem. Eng. Data 58(11) (2013) 3110-3117.
[10] X.Q. Zhao, L.J. Kang, N. Wang, H.L. An, F. Li, Y.J.Wang, Synthesis of methyl N-phenyl carbamate catalyzed by ionic liquid-promoted zinc acetate, Ind. Eng. Chem. Res. 51(35) (2012) 11335-11340.
[11] J.W. Wang, Q.F. Li, W.S. Dong,M.Q. Kang, X.K.Wang, S.Y. Peng, A new non-phosgene route for synthesis of methyl N-phenyl carbamate from phenylurea and methanol, Appl. Catal. A Gen. 261(2) (2004) 191-195.
[12] G.Y. Zhu, H.Q. Li, Y. Cao, H.T. Liu, X.T. Li, J.Q. Chen, Q. Tang, Kinetic study on the novel efficient clean decomposition of methyl n-phenyl carbamate to phenyl isocyanate, Ind. Eng. Chem. Res. 52(2013) 4450-4454.
[13] B.E. Poling, G.H. Thomson, D.G. Friend, R.L. Rowley,W.V.Wilding, Vapor pressures of pure substances, Perry's chemical Engineers' handbook:Physical and chemical data, eighth ed. McGraw-Hill, New York 2007, pp. 2-55-2-79.
[14] G. Li, Z.B. Li, E. Asselin, Determination and modeling of vapor-liquid equilibria for the sulfuric acid+water+butyl acetate+ethanol system, Ind. Eng. Chem. Res. 52(9) (2013) 3481-3489.
[15] H. Matsuda, H. Yamada, R. Takahashi, A. Koda, K. Kurihara, K. Tochigi, K. Ochi, Ebulliometric determination and prediction of vapor-liquid equilibria for binarymixtures of ethanol and ethyl hexanoate, J. Chem. Eng. Data 56(12) (2011) 5045-5051.
[16] G. Li, Z.B. Li, Determination and prediction of vapor-liquid equilibria for a system containing water+butyl acetate+cyclohexane+ethanol, J. Chem. Eng. Data 57(2012) 2543-2548.
[17] R.R. Chen,H.Ding, M.C. Liu, J.L. Qi,H. Zhou,N. Chen, Isobaric vapor-liquid equilibrium for binary system of methyl myristate+methyl palmitate at 0.5, 1.0 and 1.4 kPa, Fluid Phase Equilib. 382(2014) 133-138.
[18] L. Zhang, C.G. Yuan, Z.Z. Sun, The synthesis of methyl N-phenyl carbamate (MPC) from diphenylurea and dimethyl carbonate, Synth. Technol. Appl. 1(2006) 27-29(in Chinese).
[19] C.M. Wang, H.R. Li, L.H. Zhu, S.J. Han, Isothermal and isobaric vapor+liquid equilibria of N, N-dimethylformamide+n-propanol+n-butanol, Fluid Phase Equilib. 189(1) (2001) 119-127.
[20] Y. Lei, H.R. Li, L.H. Zhu, S.J. Han, Isobaric vapor-liquid equilibria of the binary mixtures 2-methyl-3-buten-2-ol+ethanol and 2-methyl-3-buten-2-ol+1-butanol, Fluid Phase Equilib. 206(1) (2003) 87-94.
[21] G.B. Yao, Z.P. Yang, B. Zhang, H. Xu, H.K. Zhao, Vapor pressure and isobaric vapor-liquid equilibrium for dichloronitrobenzene isomers, Fluid Phase Equilib. 367(2014) 103-108.
[22] J.M. Smith, H.C. Van Ness, M.M. Abbott, Summability equation as a mixing rule, Introduction to chemical engineering thermodynamics, seventh ed. McGraw-Hill, New York 2004, pp. 569-575.
[23] H. Renon, J.M. Prausnitz, Local compositions in thermodynamic excess functions for liquid mixtures, AIChE J. 14(1968) 135-144.
[24] Aspentech, Binary parameters (WILSON, NRTL, UNIQ), Aspen property system:Physical property methods and models V7.2, Aspentech Inc., Burlington, MA 2010, pp. 231-232.
[25] G.M. Wilson, Vapor-liquid equilibrium. XI. A new expression for the excess free energy of mixing, J. Am. Chem. Soc. 86(1964) 127-130.
[26] S. Han, G.B. Yao, Y.H. Zhong, C.B. Du, L.Meng, H.K. Zhao,Measurement andmodeling for isobaric vapor-liquid equilibrium of binary 1, 3,5-trichlorobenzene +3,5-dichloroaniline and 3-chloroaniline +3,5-dichloroaniline systems, Ind. Eng. Chem. Res. 54(14) (2015) 3706-3710.
[27] J.J. Ljunglin, H.C. Van Ness, Calculation of vapor-liquid equilibria from vapor pressure data, Chem. Eng. Sci. 17(7) (1962) 531-539.
[28] H.E. Barner, S.B. Adler, Calculation of solution nonideality from binary T-x data, Ind. Eng. Chem. Process. Des. Dev. 12(1) (1973) 71-75.
[29] P.F. Shen,H.Q. Li, Y.Wang,H.T. Liu, Separation simulation of productmethylN-phenyl carbamate obtained through coupled reaction, Petpetrochem. Technol. 39(6) (2010) 651-655(in Chinese).
[30] M. Remko, V. Frecer, J. ?i?márik, MO study of molecular association of local anaesthetics of carbamate type, Collect. Czechoslov. Chem. Commun.48(2) (1983)533-537.
[31] C.C.Hu, P.H. Chiu, S.J.Wang, S.H. Cheng, Isobaric vapor-liquid equilibria for binary systems of diethyl carbonate+propylene carbonate, diethyl carbonate+propylene glycol, and ethanol+propylene carbonate at 101.3 kPa, J. Chem. Eng. Data 60(2015) 1487-1494. |