1 Rice, R. G., "Uses of ozone in drinking water treatment" 73 (73): 44-57, 1981
2 Lucas, M. S., "Treatment of winery wastewater by ozone-based advanced oxidation processes (O3, O3/UV and O3/UV/H2O2) in a pilot-scale bubble column reactor and process economics" 72 (72): 235-241, 2010
3 Godini, K., "Treatment of waste sludge : a comparison between anodic oxidation and electro-Fenton processes" 13 (13): 188-193, 2013
4 Liu, J., "Treatment of recalcitrant organic silicone wastewater by fluidized-bed Fenton process" 132 : 16-22, 2014
5 Gulyas, H., "Treatment of industrial wastewaters with ozone/hydrogen peroxide" 32 (32): 127-134, 1995
6 Barbusiński, K., "Toxicity of industrial wastewater treated by Fenton’s reagent" 14 (14): 11-16, 2005
7 Yan-yang, C., "Three advanced oxidation processes for the treatment of the wastewater from acrylonitrile production" 60 (60): 2991-2999, 2009
8 Ershov, B. G., "The kinetics of ozone decomposition in water, the influence of pH and temperature" 83 (83): 1295-1299, 2009
9 Schwarzenbach, R. P., "The challenge of micropollutants in aqueous systems" 313 (313): 1072-1077, 2006
10 Ingles, D. L., "Studies of oxidation by Fenton's reagent using redox titration. I. Oxidation of some organic compounds" 25 (25): 87-95, 1972
11 Bard, A. J., "Standard Potentials in Aqueous Solution" Marcel Dekker Inc. 1985
12 Babu, B. R., "Removal of fatty acids from palm oil effluent by combined electro-fenton and biological oxidation process" 211 (211): 203-210, 2010
13 Yao, C. C. D., "Rate constants for direct reactions of ozone with several drinking water contaminants" 25 (25): 761-773, 1991
14 Lee, Y., "Quantitative structureactivity relationships(QSARs)for the transformation of organic micropollutants during oxidative water treatment" 46 (46): 6177-6195, 2012
15 Neta, P., "Pulse radiolysis studies. XIII. Rate constants for the reaction of hydroxyl radicals with aromatic compounds in aqueous solutions" 81 : 222-230, 1968
16 Martınez, N. S. S., "Pre-oxidation of an extremely polluted industrial wastewater by the Fenton’s reagent" 101 (101): 315-322, 2003
17 Kim, J., "Platinized WO3as an environmental photocatalyst that generates OH radicals under visible light" 44 (44): 6849-6854, 2010
18 Buffle, M. -O., "Phenols and amine induced HO generation during the initial phase of natural water ozonation" 40 (40): 3057-3063, 2006
19 Adams, C. D., "Ozone, hydrogen peroxide/ozone and UV/ozone treatment of chromium-and copper-complex dyes : Decolorization and metal release" 17 (17): 149-162, 1995
20 Baig, S., "Ozone treatment for biorefractory COD removal" 43 (43): 197-204, 2001
21 Büehler, R. E., "Ozone decomposition in water studied by pulse radiolysis. 1. HO2/O2− and HO3/O3− as intermediates" 88 (88): 2560-2564, 1984
22 Gähr, F., "Ozonation – An important technique to comply with new german laws for textile wastewater treatment" 30 (30): 255-263, 1994
23 Bailey, P. S., "Ozonation in Organic Chemistry Volume II Nonolefinic Compounds" Academic Press Inc. 1982
24 Eisenhauer, H. R., "Oxidation of phenolic wastes" 36 (36): 1116-1128, 1964
25 Boopathy, R., "New approach of integrated advanced oxidation processes for the treatment of lube oil processing wastewater" 43 (43): 6229-6236, 2018
26 Daghrir, R., "Modified TiO2 for environmental photocatalytic applications: a review" 52 (52): 3581-3599, 2013
27 Kim, M. S., "Modeling of ozone decomposition, oxidant exposure, and the abatement of micropollutants during ozonation processes" 169 : 115230-, 2020
28 Li, M., "Micropollutant degradation by the UV/H2O2 process : kinetic comparison among various radiation sources" 53 (53): 5241-5248, 2019
29 Criegee, R., "Mechanism of ozonolysis" 14 (14): 745-752, 1975
30 Fenton, H. J. H., "LXXIII. -Oxidation of tartaric acid in presence of iron" 65 : 899-910, 1894
31 Trizaoui, C., "Kinetics of the ozone oxidation of Reactive Orange 16 azo-dye in aqueous solution" 173 (173): 463-473, 2011
32 Boonrattanakij, N., "Iron crystallization in a fluidized-bed Fenton process" 45 (45): 3255-3262, 2011
33 He, D., "Influence of different nominal molecular weight fractions of humic acids on phenol oxidation by permanganate" 43 (43): 8332-8337, 2009
34 Elovitz, M. S., "Hydroxyl radical/ozone ratios during ozonation processes. I. The Rct concept" 21 (21): 239-260, 1999
35 Zepp, R. G., "Hydroxyl radical formation in aqueous reactions (pH 3-8) of iron(II) with hydrogen peroxide: the photo-Fenton reaction" 26 (26): 313-319, 1992
36 Garcia-Segura, S., "Fluidized-bed Fenton process as alternative wastewater treatment technology-A review" 67 : 211-225, 2016
37 Wang, L., "Ferrous–tetrapolyphosphate complex induced dioxygen activation for toxic organic pollutants degradation" 120 : 148-155, 2013
38 Lin, S. H., "Fenton process for treatment of desizing wastewater" 31 (31): 2050-2056, 1997
39 Messele, S. A., "Enhanced degradation of phenol by a Fenton-like system(Fe/EDTA/H2O2)at circumneutral pH" 9 (9): 474-, 2019
40 Siddiqui, M., "Empirically and theoretically-based models for predicting brominated ozonated by-products" 16 (16): 157-178, 1994
41 Koppenol, W. H., "Electrode potentials of partially reduced oxygen species, from dioxygen to water" 49 (49): 317-322, 2010
42 Maamar, M., "Electrochemical oxidation of bromothymol blue : Application to textile industrial wastewater treatment" 18 (18): 105-113, 2015
43 Brillas, E., "Electro-Fenton process and related electrochemical technologies based on Fenton’s reaction chemistry" 109 (109): 6570-6631, 2009
44 Su, C. C., "Effect of operating parameters on the decolorization and oxidation of textile wastewater by the fluidized-bed Fenton process" 83 : 100-105, 2011
45 Chen, M., "Effect of different carriers and operating parameters on degradation of flax wastewater by fluidized-bed Fenton process" 71 (71): 1760-1767, 2015
46 Wu, J., "Disinfection of recycled red-meat-processing wastewater by ozone" 80 (80): 828-833, 2005
47 Sohn, J., "Disinfection decay and disinfection by-products formation model development : chlorination and ozonation by-products" 38 (38): 2461-2478, 2004
48 Khadhraoui, M., "Discoloration and detoxicification of a Congo red dye solution by means of ozone treatment for a possible water reuse" 161 (161): 974-981, 2009
49 Lee, M., "Development of prediction models for the reactivity of organic compounds with ozone in aqueous solution by quantum chemical calculations : the role of delocalized and localized molecular orbitals" 49 (49): 9925-9935, 2015
50 Minakata, D., "Development of a group contribution method to predict aqueous phase hydroxyl radical(HO•)reaction rate constants" 43 (43): 6220-6227, 2009
51 Barder, H., "Determination of ozone in water by the indigo method" 15 (15): 449-456, 1981
52 Karami, M. A., "Degradation of reactive red 198 from aqueous solutions by advanced oxidation process : O3, O3/H2O2, and persulfate" 5 : 26-, 2016
53 Wols, B. A., "Degradation of 40 selected pharmaceuticals by UV/H2O2" 47 (47): 5876-5888, 2013
54 Staehelin, J., "Decomposition of ozone in water : Rate of initiation by hydroxide ions and hydrogen peroxide" 16 (16): 676-681, 1982
55 Staehelin, J., "Decomposition of ozone in the presence of organic solutes acting as promoters and inhibitors of radical chain reactions" 19 (19): 1206-1213, 1985
56 Bilińska, L., "Coupling of electrocoagulation and ozone treatment for textile wastewater reuse" 358 : 992-1001, 2019
57 Qi, L., "Coupling of biological methods with membrane filtration using ozone as pre-treatment for water reuse" 270 (270): 264-268, 2011
58 Güneş, E., "Comparison of Fenton process and adsorption method for treatment of industrial container and drum cleaning industry wastewater" 39 (39): 824-830, 2018
59 Ulucan, K., "Comparative study of electrochemical wastewater treatment processes for bilge water as oily wastewater : a kinetic approach" 747 : 104-111, 2015
60 Peng, R., "Coke plant wastewater posttreatment by Fenton and electro-Fenton processes" 34 (34): 89-95, 2017
61 von Gunten, U., "Bromate formation during ozonation of bromide-containing waters:interaction of ozone and hydroxyl radical reactions" 28 (28): 1234-1242, 1994
62 Joss, A., "Biological degradation of pharmaceuticals in municipal wastewater treatment : Proposing a classification scheme" 40 (40): 1686-1696, 2006
63 Ikehata, K., "Aqueous pesticide degradation by ozonation and ozone-based advanced oxidation processes : A review(Part I)" 27 (27): 83-114, 2005
64 Chachou, L., "Application of the electro-Fenton process for cutting fluid mineralization" 36 (36): 1924-1932, 2015
65 Perkowski, J., "Application of ozone in textile wastewater treatment" 18 (18): 73-85, 1996
66 Świetlik, J., "Application of fluorescence spectroscopy in the studies of natural organic matter fractions reactivity with chlorine dioxide and ozone" 38 (38): 3791-3799, 2004
67 Amor, C., "Application of advanced oxidation processes for the treatment of recalcitrant agro-industrial wastewater : A review" 11 (11): 205-, 2019
68 Lee, Y., "Advances in predicting organic contaminant abatement during ozonation of municipal wastewater effluent : reaction kinetics, transformation products, and changes of biological effects" 2 : 421-442, 2016
69 Bayar, S., "Advanced treatment of industrial wastewater from pistachio processing by Fenton process" 112 : 106-111, 2018
70 Ghanbari, F., "A comparative study of electrocoagulation, electrochemical Fenton, electro-Fenton and peroxi-coagulation for decolorization of real textile wastewater : electrical energy consumption and biodegradability improvement" 3 (3): 499-506, 2015
71 Gu, Z., "A comparative study of dinitrodiazophenol industrial wastewater treatment : Ozone/hydrogen peroxide versus microwave/persulfate" 130 : 39-47, 2019