1 Cesana, A., Mantegazza, M.A., Pastori, M., “A study of the organic by-products in the cyclohexanone ammoximation”, J. Mol. Catal.,117, 367-373 (1997) 2 Taramasso, M., Perego, G., Notari, B., “Preparation of porous crystalline synthetic material comprised of silicon and titanium oxides”, U.S. Pat., 4410501 (1993). 3 Rpffia, P., Padovan, M., Moretti, E., De Albetti, G., “Catalytic process for preparing cyclohexanone-oxime”, EP Pat., 0208311 (1987). 4 Zhang, X.J., Wang, Y., Xin, F., “Coke deposition and characterization on titanium silicalite-1 catalyst in cyclohexanone ammoximation”, Appl. Catal. A: General., 307 (2/3), 222-230 (2006). 5 Petrini, G., Cesana, A., Alberti, G.D., Genoni, F., Leofanti, G., Padovan, M., Paparatto, G., Roffia, P., “Deactivation phenomena on Ti-silicalite”, Stud. Surf. Sci. Catal., 61, 761-766 (1991). 6 Liu, N., Guo, H.C., Wang, X.S., Chen, L.X., Chen, Y.Y., “Hydrothermostability of titanium silicate TS-1 zeolite in environment of cyclohexanone ammoxidation”, Chin. J. Catal., 24 (6), 441-446 (2003). 7 Sun, B., “Study on dissolution erosion of titanium silicalite zeolite in cyclohehanone ammoximation”, Pet. Process. Petrochem., 36 (11),54-58 (2005). (in Chinese) 8 Wu, W., Sun, B., Li, Y.X., Chen, S.B., Wang, E.Q. Zhang, S.Z., “Process for ammoximation of carbonyl compounds”, U.S. Pat.,20050215810 (2005). 9 Fu, S.B., Wang, H.B., Xu, F.H, Zhu, Z.H., “Cyclic separation of titanium silicalite-1 catalysts in their catalytic reactions”, CN Pat.,00113447.7 (2003). 10 Zhong, Z.X., Xing, W.H., Liu, X., Jin, W.Q., Xu, N.P., “Fouling and regeneration of ceramic membranes used in recovering titanium silicalite-1 catalysts”, J. Membr. Sci., 301 (1-2), 67-75 (2007). 11 Sahachaiyunta, P., Koo, T., Sheikholeslami, R., “Effect of several inorganic species on silica fouling in RO membranes”, Desalination,144, 373-378 (2002). 12 Bremere, I., Kennedy, M., Mhiyo, S., Jaljuli, A., Witkamp, G.J., Schippers, J., “Prevention of silica scale in membrane systems: removal of monomer and polymer silica”, Desalination, 132, 89-100 (2000). 13 Sheikholeslami, R., Tan, S., “Effects of water duality on silica fouling of desalination plants”, Desalination, 126, 267-280 (1999). 14 Sch fer, A.I., Schwicker, U., Fischer, M.M., Fane, A.G., Waite, T.D., “Microfiltration of colloids and natural organic matter”, J. Membr. Sci., 171 (2), 151-172 (2000). 15 Amy, G., Cho, J., “Interactions between natural organic matter (nom) and membranes: Rejection and fouling”, Wat. Sci. Technol., 40 (9),131-139 (1999). 16 Braghetta, A., DiGiano, F.A., Ball, W.P., “NOM accumulation at NF membrane surface: Impact of chemistry and shear”, J. Environ. Eng.,124, 1087-1098 (1998). 17 Jucker, M.M., Clark, J., “Adsorption of aquatic humic substances on hydrophobic ultrafiltration membranes”, J. Membr. Sci., 97, 37-52 (1994). 18 Semiat, R., Sutzkover, I., Hasson, D., “Scaling of RO membranes from silica supersaturated solutions”, Desalination, 157 (1-3),169-191 (2003). 19 Lee, G.D., Jung, S.K., Jeong, Y.J., Park, J.H., Lim, K.T., Ahn, B.H., Hong, S.S., “Photocatalytic decomposition of 4-nitrophenol over titanium silicalite (TS-1) catalysts”, Appl. Catal., A, 239 (1/2),197-208 (2003). 20 Bergna, H.E., Roberts, W.O., Colloidal Silica: Fundamentals and Applications, CRC Taylor & Francis, New York (2006). 21 Wittmann, G., Demeestere, K., Dombi, A., “Preparation, structural characterization and photocatalytic activity of mesoporous Ti-silicates”, Appl. Catal. B, 61 (1/2), 47-57 (2005). 22 Zhang, M.M., Li, C., Benjamin, M.M., Chang, Y.J., “Fouling and natural organic matter removal in adsorbent/membrane systems for drinking water treatment”, Environ. Sci. Technol., 37 (8), 1663-1669 (2003). 23 Lee, S.A., Choo, K.H., Lee, C.H., Lee, H.I., Hyeon, T., Choi, W., Kwon, H.H., “Use of ultrafiltration membranes for the separation of TiO2 photocatalysts in drinking water treatment”, Ind. Eng. Chem. Res., 40 (7), 1712-1719 (2001). 24 Ousman, M., Bennasar, M., “Determination of various hydraulic resistances during cross-flow filtration of a starch grain suspension through inorganic membranes”, J. Membr. Sci., 105 (1), 1-21 (1995). 25 Sj berg, S., “Silica in aqueous environments”, J. Non-Cryst. Solids,196, 51-57 (1996). 26 Chang, S.M., Lee, M., Kim, W.S., “Preparation of large monodispersed spherical silica particles using seed particle growth”, J. Colloid. Interf. Sci., 286 (2), 536-542 (2005). 27 Adamczyk, Z., Jachimska, B., Kolasińska, M., “Structure of colloid silica determined by viscosity measurements”, J. Colloid. Interf. Sci.,273 (2), 668-674 (2004) 28 Bengoa, J.F., Gallegos, N.G., Marchetti, S.G., Alvarez, A.M., Cagnoli, M.V., Yeramián, A.A., “Influence of TS-1 structural properties and operation conditions on benzene catalytic oxidation with H2O2 ”, Microporous Mesoporous Mater., 24 (4-6) ,163-172 (1998). 29 Lee, N.H., Amy, G., Lozier, J., “Understanding natural organic matter fouling in low-pressure membrane filtration”, Desalination, 178 (1-3), 85-93 (2005). 30 Son, H.J., Son, Y.D., Roh, J.S., Jik, W., Sin, P.S., Jung, C.W., Kang, L.S., “Application of MIEX® pre-treatment for ultrafiltration membrane process for NOM removal and fouling reduction”, Water Sci. Technol., 5 (5), 15-24 (2005). 31 Altmann, J., Ripperger, S., “Particle deposition and layer formation at the crossflow microfiltration”, J. Membr. Sci., 124 (1), 119-128 (1997). |