[1] B.E.I. Abdelrazing, E.M. Gartnre, D.F. Myers, Low shrinkage cement composition, US Pat., 5326397 (1994). [2] X.G. Guo, J.P. Shang, X.Y. Ma, J. Li, Synthesis of dialkyl hexamethylene-16diacarbamate from1,6-hexamethylenediamine and alkyl carbamate over FeCl3 as catalyst, Catal. Commun. 10 (8) (2009) 1248-1251. [3] M.L. Fan, J.R. Deng, L. Chen, M.K. Zhang, Clean synthesis of 1,6-hexamethylene diisocyanate, Shiyou Huagong 35 (10) (2006) 972-975 (in Chinese). [4] Z. Kolská, V. Ruzicka, R. Gani, Estimation of the enthalpy of vaporization and the entropy of vaporization for pure organic compounds at 298.15 K and at normal boiling temperature by a group contribution method, Ind. Eng. Chem. Res. 44 (22) (2005) 8436-8454. [5] M.A. Abdi, A. Meisen, Vapor pressure measurements of bis(hydroxyethyl) piperazine and tris(hydroxyethyl)ethylenediamine, J. Chem. Eng. 43 (2) (1998) 133-137. [6] E.W. Lemmon, A.R.H. Goodwin, Critical properties and vapor pressure equation for alkanes CnH2n+2: Normal alkanes with n<= 36 and isomers for n=4 through n=9, J. Phys. Chem. Ref. 29 (1) (2000) 1-39. [7] J.F. Huang, Y.F. Lee, L.S. Lee, Vapor-liquid equilibrium measurements for tetraethyl orthosilicate + ethanol at 24.00 kPa and 53.32 kPa, J. Chem. Eng. 49 (5) (2004) 1175-1179. [8] W. Oswald, K. Eberhard, N. Klaus, K. Ernst, Process for the production of diurethanes and their use for the production of diisocyanates, US Pat., 5744633 (1998). [9] X.J. Yuan,W.L. Xue, Z.X. Zeng, T. Pu, Vapor pressure and enthalpy of vaporization of 2-amino-3-methylpyridine, J. Chem. Eng. 52 (6) (2007) 2431-2435. [10] W.L. Huo, Z.X. Zeng, W.L. Xue, Vapor pressure measurements for 2-chlor omethyl-benzoxaz-ole and vapor-liquid equilibrium measurements for the chlorobenzene + 2-Chl-oromethylbenzox-azole system, J. Chem. Eng. 51 (6) (2006) 2110-2113. [11] H. Dong, C.Wu, X.F. Yang, G.Q. Lai, Measurement and correlation of the vapor pressure of methylethoxydichlorosilane, J. Chem. Eng. 55 (2) (2010) 889-890. [12] X.G. Xu, Z.X. Zeng,W.L. Xue, H.Y. Zhang, Heat capacity and enthalpy of formation of trimethyl phosphite, 2-chloromethylbenzonitrile, and 2-dimethyl phosphonomethyl- benzonitril-e, J. Chem. Eng. 52 (4) (2007) 1189-1194. [13] D.G. Archer, Thermodynamic properties of synthetic sapphire (α-Al2O3), standard reference material 720 and the effect of temperature-scale differences on thermodynamic properties, J. Phys. Chem. Ref. 22 (6) (1993) 1441. [14] Z.X. Zeng, X.N. Li, W.L. Xue, C.S. Zhang, S.C. Bian, Heat capacity, enthalpy of formation, and entropy of methyl carbamate, Ind. Eng. Chem. Res. 49 (12) (2010) 5543-5548. [15] P. Trens, N. Tanchoux, A. Galarneau, F. Fajula, New evidence of confinement effects in mesoporous materials and the definition of confined Pitzer acentric factors, J. Phys. Chem. B 109 (34) (2005) 16415-16420. [16] A. Vetere, A simple modification of the Pitzer method to predict second virial coefficients, Can. J. Chem. Eng. 85 (1) (2007) 118-121. [17] A.L. Lydersen, Estimation of Critical Properties of Organic Compounds, Univ. Wisconsin Coll. Eng., Eng. Exp. Stn. Rep.3, Madison, Wis., 1955. [18] R.C. Weast, J.G. Grasselli, Handbook of Data on Organic Compounds, 2nd ed.vol. Ⅲ CRC Press, Inc, Boca Raton, Florida, 1989. [19] D.F. Othmer, G.G. Brown, Correlating vapor pressure and latent heat data, Ind. Eng. Chem. 32 (6) (1940) 841-856. [20] D.R. Stull, Vapor pressure of pure substances organic compounds, Ind. Eng. Chem. 39 (4) (1947) 517-540. [21] A. Nadezhdin, Rep. Phys. 23 (1887) 708. [22] S.O. Nilssin, I. Wadso, Thermodynamic properties of some mono-, di-, and tri esters. Enthalpies of solution in water at 288.15 K to 318.15 K and enthalpies of vaporization and heat capacities at 298.15 K, J. Chem. Thermodyn. 18 (7) (1986) 673-681. [23] K.M. Watson, Thermodynamics of the liquid state, Ind. Eng. Chem. 35 (4) (1943) 398-406. [24] R.C. Reid, J.M. Prausnitz, B.E. Poling, The Properties of Gases and Liquids, 4th ed. McGraw-Hill, New York, 1987. [25] M. Davies, A.H. Jones, Lattice energies of some N-methyl amides and of some carbamates, Trans. Faraday Soc. 55 (1959) 1329-1332. [26] H.A. Skinner, A. Snelson, The heats of combustion of the four isomeric butyl alcohols, Trans. Faraday Soc. 56 (1960) 1776-1783. [27] G.S. Parks, K.K. Kelley, H.M. Huffman, Thermal data on organic compounds. V. A revision of the entropies and free energies of nineteen organic compounds, J. Am. Chem. Soc. 51 (7) (1929) 1969-1973. [28] I. Contineanu, L.Wagner, L. Stanescu, D.I.Marchidan, Combustion and formation enthalpies of o-phenylenediamine, urea and 2-benzimidazolone, Rev. Roum. Chim. 27 (2) (1982) 205-209. [29] G.S. Parks, H.M. Huffman, M. Barmore, Thermal data on organic compounds. XI. The heat capacities, entropies and free energies of ten compounds containing oxygen or nitrogen, J. Am. Chem. Soc. 55 (7) (1933) 2733-2740. [30] M.W. Chase Jr., NIST-JANAF thermochemical tables, fourth edition, J. Phys. Chem. Ref. Data Monograph 9 (1998) 1-1951. |