[1]
U. von Gunten. Ozonation of drinking water: part I: oxidation kinetics and product formation. Water Research, Vol.37 (7): 1443-1467(2003a).
DOI: 10.1016/s0043-1354(02)00457-8
Google Scholar
[2]
J.L. Acero and U. von Gunten. Characterisation of oxidation processes: ozonation and the AOP O3/H2O2. American Water Works Association Vol.93: 90-100 (2001)
Google Scholar
[3]
L.C. Lei and D.C. Wang et al. Water treatment advanced oxidation technology [M]. Chemical Industry Press (in Chinese), 2-15 (2001)
Google Scholar
[4]
O. Legrini, E. Oliveros and A.M. Braun. Photochemical processes for water treatment. Chemical Reviews, Vol.93 (2): 671-698(2003)
DOI: 10.1021/cr00018a003
Google Scholar
[5]
All Safarzadeh-amiri. O3/H2O2 treatment of methyl-tert-butyl ether (MTBE) in contaminated water. Waste Research, Vol. 35 (15): 3706-3714(2001)
DOI: 10.1016/s0043-1354(01)00090-2
Google Scholar
[6]
V. Fontanier, V. Farines, J. Albet, S. Baig and J. Molinier. Study of catalyzed ozonation for advanced treatment of pulp and paper mill effluents. Water Research 40: 303–310 (2006)
DOI: 10.1016/j.watres.2005.11.007
Google Scholar
[7]
J. Rivera-Utrilla, M. Sanchez-Polo, M.A. Mondaca, and C.A. Zaror. Effect of ozone and ozone/activated carbon treatments on genotoxic activity of naphthalenesulfonic acids. Journal of Chemical Technology and Biotechnology 77: 883–890 (2002)
DOI: 10.1002/jctb.655
Google Scholar
[8]
J.B. Wang, S.P. Hou and Y.D. Zhou, et al. The Ru/Ac catalytic ozonation for difficult biodegradable organic compounds. Environmental Science (in Chinese), Vol. 30 (9): 2565-2569 (2009)
Google Scholar
[9]
R. Gracia, S. Cortes and J. Sarasa, et al. TiO2-catalysed ozonation of raw Ebro River water. Water Research, Vol. 34 (5): 1525-1532(2000)
DOI: 10.1016/s0043-1354(99)00297-3
Google Scholar
[10]
F. Virginie, F. Vincent and A. Joёl, et al. Study of catalyzed ozonation for advanced treatment of pulp and papermill effluents. Water Research, Vol. 40 (2): 303-310 (2006)
Google Scholar
[11]
M.H. Sui, J. Ma and L. Sheng. Adsorption in heterogeneous catalytic ozonation degradation of organic compounds in water, China Water & Wastewater (in Chinese), Vol. 22 (23): 99-102 (2006)
Google Scholar
[12]
N.H. Ince, G. Tezcanli, R.K. Belen and I.G. Apikyan. Ultrasound as a catalyzer of aqueous reaction systems: the state of the art and environmental applications, Appl. Catal. B: Environ. 29: 167–176(2001)
DOI: 10.1016/s0926-3373(00)00224-1
Google Scholar
[13]
P. Lu. Study of ultrasound collaborative ozone oxidation degradation of molasses alcohol wastewater Water treatment technology (in Chinese), Vol. 35 (4):78-81 (2009)
Google Scholar
[14]
S. Song, H.L. Jin, Z.Q. He. Study of ultrasound strengthen ozone oxidation of disperse blue dye wastewater. Journal of Zhejiang University of Technology (in Chinese), Vol.34 (3): 306-309 (2006)
Google Scholar
[15]
F. Beltran, J.F. Garcia-Araya and B. Acedo. Advanced oxidation of atrazine in water D II. Ozonation combined with ultraviolet radiation. Wat. Res, Vol. 28(10): 2165-2174 (1994)
DOI: 10.1016/0043-1354(94)90028-0
Google Scholar
[16]
Z.W. Zhu. Research of the photocatalytic ozonation for detoxification and degradation of chemical pharmaceutical wastewater. Chemical Engineering and Equipment (in Chinese), Vol.10: 143-149 (2008)
Google Scholar
[17]
B.B. Xu, Z.L. Chen and Q. Fei, et al. Research of UV/O3 on nitrosodimethylamine degradation products controlling. Environmental Science (in Chinese), Vol. 29 (12): 3421-3426 (2008)
Google Scholar
[18]
J.F. Sun, Z.H. Wang and J.Z. Liu, et al. Study of ozone/UV for the degradation of formaldehyde. Environmental Engineering (in Chinese), Vol.3 (3): 506-510 (2009)
Google Scholar
[19]
W.M. Zhu, C.D. Wu and L.J. Chen, et al. Researches of influencing factors on hydraulic cavitation strengthen ozone oxidation for degradation of phenol. Industrial Water & Wastewater (in Chinese), Vol. 38 (2): 23-25 (2007)
Google Scholar
[20]
Y. Chen, C.D. Wu and S.G. Li, et al. Preliminary study of hydrodynamic cavitation strengthen ozone oxidation for degradation of rhodamine-B. Treatment technology (in Chinese), Vol. 34 (6): 12-15 (2008)
Google Scholar