1 Aneke, L.E., Gerritsen, L.A., van den Berg, P.J., de Jong, W.A., “The disproportion of toluene over a HY/β-AlF3/Cu catalyst (1) Preparation and characterization ”, J. Catal., 59, 26—36(1979). 2 Borgna, A., Sepulveda, J., Magni, S.I., Apesteguia, C.R., “Active sites in the alkylation of toluene with methanol: A study by selective acid-base poisoning”, Appl. Catal. A : Gen., 276, 207—215(2004). 3 Das, J., Bhat, Y.S., Bhardwaj, A.I., Halgeri, A.B., “Zeo-lite beta catalyzed C7 and C9 aromatics transformation”, Appl. Catal. A: Gen., 116, 71—79(1994). 4 Aneke, L.E., Gerritsen, L.A., Eilers, J., Trion, R., “The disproportion of toluene over a HY/β-AlF3/Cu catalyst (2). Kineitcs”, J. Catal., 59, 37—44(1979). 5 Bhavikattl, S.S., Patwardhan, S.R., “Toluene dispropor-tionation over nickel- loaded aluminum-deficient mor-denite (2) Kinetics”, Ind. Eng. Chem. Res., 20(1), 106—109 (1981). 6 Bhaskar, G.V., Do, D.D., “Toluene disproportionantion re-action over HZSM-5 zeolites: Kinetics and mechanism”, Ind. Eng. Chem. Res., 29(3), 355—361(1990). 7 Tsai, T.C., Chen, W.H., Lai, C.S., Liu, S.B., Wang, I., Ku, C.S., “Kinetics of toluene disproportionation over fresh and coked H-mordenite”, Catal. Today, 97, 297—302 (2004). 8 Liu, H.X., “Reaction characteristics and kinetic study for toluene disproportionation and C9-araomatics transalky-lation over β zeolites”, Master Thesis, East China Uni-versity of Science & Technology, Shanghai(2001). (in Chinese) 9 Xu, O.G., Su, H.Y., Jin, X.M., Chu, J., “Kinetic model for toluene disproportionation and transalkylation with C9-Aromatics”, Journal of Chemical Industry and Engi-neering (China), 58(3), 630—637(2007). (in Chinese) 10 Das, J., Bhat, Y.S., Halgeri, A.B., “Transalkylation and disproportionation of toluene and C9 aromatics over zeo-lite beta”, Catal. Lett., 23, 161—168(1994). 11 Dumitriu, E., Guimon, C., Hulea, V., Lutic, D., Fechete, I., “Transalkylation of toluene with trimethylbenzenes catalyzed by various AFI catalysts”, Appl. Catal. A: Gen., 237, 211—221(2002). 12 Bibby, D.M., Howe, R.F., McLellan, G.D., “Coke forma-tion in high-silica zeolites ”, Appl. Catal. A: Gen., 93(1), 1—34(1992). 13 Meshram, N.R., Hegde, S.G., Kulkarmi, S.B., Ratnasamy, P., “Disproportionation of toluene over HZSM-5 zeo-lites”, Appl. Catal. A: Gen., 8, 359—367(1983). 14 Bharati, S.P., Bhatia, S., “Deactivation kinetics of toluene disproportionation over hydrogen mordenite catalyst”, Ind. Eng. Chem. Res., 26(9), 1854—1860(1987). 15 Uguina, M.A., Sotelo, J.L., Serrano, D.P., Valverde, J.L., “Deactivation kinetics of para-selective toluene dispro-portionation over modified ZSM-5”, Ind. Eng. Chem. Res., 33(1), 26—31(1994). 16 Jacob, S.M., Gross, B., Weekman, Jr. V.W., “A lumping and reaction scheme for catalytic cracking”, AIChE J., 22(4), 701—713(1976). 17 Taskar. U., Riggs, J.B., “Modeling and optimization of a semiregenerative catalytic naphtha reformer”, AIChE J., 43(3), 740—753(1997). 18 van Trimpont, P.A., Marin, G.B., Froment, G.F., “Reform-ing of C7 hydrocarbons on sulfided commercial Pt/Al2O3 catalyst”, Ind. Eng. Chem. Res., 27(1), 51—57(1988). 19 Al-Khattaf, S., Tukur, N.M., Al-Amer, A., “Modeling xylene reactions over ZSM-5 zeolite in a riser simulator: 1,2-versus 1,2-Methyl Shift”, Ind. Eng. Chem. Res., 44(21), 7957—7968(2005). 20 Froment, G.F., Bischoff, K.B., Chemical Reactor Analy-sis and Design, 2nd edition., Prentice Hall, NJ (1992). 21 Krishnaswamy, S., Kittrell, J.R., “Impact of diffusional limitations on temperature-time profiles for deactivating catalysts”, Ind. Eng. Chem. Fundam., 21, 95— 97(1982). 22 Szépe, S., Levenspie, O., “Optimal temperature policies for reactors subject to catalyst deactivation (Ⅰ) Batch reactor”, Chem. Eng. Sci., 23, 881—894(1968).
|