1 Speight, J., Chemistry and Technology of Petroleum, Marcel Dekker, New York (1991). 2 Furimsky, E., “Catalytic hydrodeoxygenation”, Appl. Catal. A, 199, 147-190 (2000). 3 Viljava, T.R., Komulainen, R.S., Krause, A.O.I., “Effect of H2S on the stability of CoMo/Al2O3 catalysts during hydrodeoxygenation”, Catal. Today, 60, 83-92 (2000). 4 Li, C.L., Xu, Z., Gates, B.C., Petrakis, L., “Catalytic hydroprocessing of SRC-I I heavy distillate fractions (4) Hydrodeoxygmation of phenolic compounds in the acidic fractions”, Ind. Eng. Chem. Proc. Des. Dev., 24, 92-97 (1985). 5 Daage, M., Chianelli, R.R., “Structure-function relations in molybdenum sulfide catalysts:The rim-edge model”, J. Catal., 149, 414-427 (1994). 6 Farag, H., Sakanishi, K., Kouzu, M., Matsumura, A., Sugimoto, Y., Saito, I., “Dibenzothiophene hydrodesulfurization over synthesized MoS2 catalysts”, J. Mol. Catal. A, 206, 399-408 (2003). 7 Devers, E., Afanasiev, P., Jouguet, B., Vrinat, M., “Hydrothermal syntheses and catalytic properties of dispersed molybdenum sulfides”, Catalysis Letters, 82 (1/2), 13-17 (2002). 8 Del Bianco, A., Panariti, N., Marchionna, M., “Upgrading heavy oil using slurry processes”, Chemtech., 25, 35-43 (1995) . 9 Tye, C.T., Smith, K.J., “Hydrodesulfurization of dibenzothiophene over exfoliated MoS2 catalyst”, Catalysis Today, 116, 461-468 (2006). 10 Hall, A.G., Chan, A.D., Smith, K.J., “Characterization of dispersed hydroprocessing catalysts prepared in reversed micelles”, Can. J. Chem. Eng., 76 (4), 744-752 (1998). 11 Alonso, G., Valle, M.D., Cruz, J., Licea-Claverie, A., Petranovskii V., Fuentes, S., “Preparation of MoS2 and WS2 catalysts by in situ decomposition of ammonium thiosalts”, Catal. Lett., 52, 55-61 (1998). 12 Tye, C.T., Smith, K.J., “Cold Lake bitumen upgrading using exfloliated MoS2”, Catal. Lett., 95, 203-209 (2004). 13 Del Valle, M., Avalos-Borja, M.J., Cruz, S.F., “Exfoliation of MoS2 catalysts:structural and catalytic changes”, Mater. Res. Soc. Symp. Proc., 351, 287-292 (1994). 14 Laurent, E., Delmon, B., “Influence of oxygen, nitrogen, and sulfur-containing compounds on the hydrodeoxygenation of phenols over sulfided CoMo/γ-A12O3 and NiMo/γ-A12O3 Catalysts”, Ind. Eng. Chem. Res., 32, 2516-2524 (1993). 15 Girgis, M.J., Gates, B.C., “Reactivities, reaction networks, and kinetics in high pressure catalytic hydroprocessing”, Ind. Eng. Chem. Res., 30, 2021-2058 (1991). 16 Wandas, R., Surygala, J., Sliwka, E., “Conversion of cresols and naphthalene in the hydroprocessing of three-component model mixtures simulating fast pyrolysis tars”, Fuel, 75, 687-694 (1996). 17 Massoth, F.E., Politzer, P., Concha, M.C., “Catalytic hydrodeoxygenation of methyl-substituted phenols:Correlations of kinetic parameters with molecular properties”, J. Phys. Chem. B, 110, 14283-14291 (2006). 18 Odebunmi, E.O., Ollis, D.F., “Catalytic hydrodeoxygenation (I) Conversion of o-, p-, and m-cresols”, J. Catal., 80, 56-64 (1983). 19 Furimsky, E., Massoth, F.E., “Hydrodenitrogenation of petroleum”, Catal. Rev., 47, 297-489 (2005). 20 Chon S., Allen, D.T., “Catalytic hydroprocessing of chlorophenols”, AIChE J., 37 (11), 1730-1732 (1991). 21 Li, C.L., Xu, Z.R., Cao, Z.A., Gates, B.C., “Hydrodeoxygenation of 1-naphthol catalyzed by sulfided Ni-Mo/γ-A12O3 :Reaction network”, AIChE J., 31, 170-174 (1985). 22 Bredenberg, J.B., Huuska, M., R ty, J., Korpio, M., “Hydrogenolysis and hydrocracking of the carbon-oxygen bond (I) Hydrocracking of some simple aromatic O-compounds”, J. Catal., 77, 242-247 (1982). 23 Grange, P., Laurent, E., Maggi, R., Centeno, A., Delmon, B., “Hydrotreatment of pyrolysis oils from biomass:reactivity of the various categories of oxygenated compounds and preliminary techno-economical study”, Catal. Today, 29 (1-4), 297-301 (1996). 24 Yang, Y.Q., Tye, C.T., Smith, K.J., “Inflenece of MoS2 catalyst morphology on the hydrodeoxygenation of phenols”, Catal. Comm., 9, 1364-1368 (2008). 25 Joensen, P., Frindt, R.F., Morrison, S.R., “Single-layer MoS2”, Mater. Res. Bull., 21, 457-461 (1986). 26 Iwata, Y., Sato, K., Yoneda, T., Miki, Y., Sugimoto, Y., Nishijima, A., Shimada, H., “Catalytic functionality of unsupported molybdenum sulfide catalysts prepared with different methods”, Catal. Today, 45 (1-4), 353-359 (1998). 27 Kirby, S.R., Song, C., Schobert, H.H., “Hydrodeoxygenation of O-containing polycyclic model compounds using a novel organometallic catalyst precursor”, Catal. Today, 31, 121-135 (1996). 28 Perry, R., Chilton, C.H., Chemical Engineers' Handbook, McGrew-Hill, New York (1973). 29 Levenspiel, O., Chemical Reaction Engineering, 3rd ed., John Wiley, New York (2002). |