References
- Taiwan Environment White Book, Taiwan Environmental Protection Administration, Taipei, 2014.
- D. Haaken, T. Dittmar, V. Schmalz, E. Worch, Disinfection of biologically treated wastewater and prevention of biofouling by UV/electrolysis hybrid technology: influence factors and limits for domestic wastewater reuse, Water Res., 52 (2014) 20–28.
- S.E. Hrudey, Chlorination disinfection by-products, public health risk tradeoffs and me, Water Res., 43 (2009) 2057–2092.
- V. Lazarova, P. Savoye, M.L. Janex, E.R.B. III, M. Pommepuy, Advanced wastewater disinfection technologies: state of the art and perspectives, Water Sci. Technol., 40 (1999) 203–213.
- A.K. Chopra, A.K. Sharma, Disinfection of biologically treated municipal wastewater using electrochemical process, Sep. Sci. Technol., 49(2014) 2613–2619.
- Y.X. Sun, Q.Y. Wu, H.Y. Hu, J. Tian, Effects of operating conditions on THMs and HAAs formation during wastewater chlorination, J. Hazard. Mater., 168 (2009) 1290–1295.
- K. Watson, M.J. Farre, N. Knight, Strategies for the removal of halides from drinking water sources, and their applicability in disinfection by-product minimisation: a critical review, J. Environ.
Manage., 110 (2012) 276–298.
- T. Bond, E.H. Goslan, S.A. Parsons, B. Jefferson, Treatment of disinfection by-product precursors, Environ. Technol., 32 (2011) 1–25.
- U. Alkan, A. Teksoy, A. Atesli, H.S. Baskaya, Efficiency of the UV/H2O2 process for the disinfection of humic surface waters, J. Environ. Sci. Health A, 42 (2007) 497–506.
- G.G. Hancock, E.M. Davis, Regrowth potential of coliforms after UV disinfection of municipal wastewater, J. Environ. Sci. Health A, 34 (1999) 1737–1743.
- C. Pablos, J. Marugan, R. van Grieken, E. Serrano, Emerging micropollutant oxidation during disinfection processes using UV-C, UV-C/H2O2, UV-A/TiO2 and UV-A/TiO2/H2O2, Water Res., 47 (2013) 1237–1245.
- M.D. Labas, C.S. Zalazar, R.J. Brandi, A.E. Cassano, Reaction kinetics of bacteria disinfection employing hydrogen peroxide, Biochem. Eng. J., 38 (2008) 78–87.
- J. Rodríguez-Chueca, M.P. Ormad, R. Mosteo, J. Sarasa, J.L. Ovelleiro, Conventional and advanced oxidation processes used in disinfection of treated urban wastewater, Water Environ. Res., 87 (2015) 281–288.
- Y. Penru, A.R. Guastalli, S. Esplugas, S. Baig, Application of UV and UV/H2O2 to seawater: disinfection and natural organic matter removal, J. Photochem. Photobiol. A, 233 (2012) 40–45.
- A. Teksoy, U. Alkan, S.Ç.k. Eieren, B.e. Topaç, F.O.T. Çagban, H.S. Baçkaya, Comparison of indicator bacteria inactivation by the ultraviolet and the ultraviolet/hydrogen peroxide disinfection processes in humic waters, J. Water Health, (2011) 659–669.
- J.C. Kruithof, P.C. Kamp, B.J. Martijn, UV/ H2O2Treatment: a practical solution for organic contaminant control and primary disinfection, Ozone Sci. Eng., 29 (2007) 273–280.
- T. Putois, S. Guittonneau, Z. Chaabna, S. Viboud, P. Zydowicz, X. Bayle, D. Fontvieille, advanced oxidation processes for disinfection treatment of cooling waters, Ozone Sci. Eng., 36 (2014) 440–450.
- Y.J. Jung, Y. Yoon, T.S. Pyo, S.T. Lee, K. Shin, J.W. Kang, Evaluation of disinfection efficacy and chemical formation using MPUV ballast water treatment system (GloEn-Patrol), Environ. Technol., 33 (2012) 1953–1961.
- Z.A. Bhatti, Q. Mahmood, I.A. Raja, A.H. Malik, N. Rashid, D. Wu, Integrated chemical treatment of municipal wastewater using waste hydrogen peroxide and ultraviolet light, Phys. Chem. Earth, 36 (2011) 459–464.
- Standard methods for the examination of water and wastewater, 22nd ed., American Public Health Association, American Water Works Association, and Water Environment Federation, Washington DC, 2012.
- A. Yasar, N. Ahmad, H. Latif, A. Amanat Ali Khan, Pathogen re-growth in UASB effluent disinfected By UV, O3, H2O2, and advanced oxidation processes, Ozone Sci. Eng., 29 (2007) 485–492.
- R.J. Xie, M.J. Gomez, Y.J. Xing, Field investigation of advanced oxidation of secondary effluent from municipal wastewater treatment plant, J. Environ. Sci. Health A, 42 (2007) 2047–2057.
- M.J. Flores, R.J. Brandi, A.E. Cassano, M.D. Labas, Chemical disinfection with H2O2 − The proposal of a reaction kinetic model, Chem. Eng. J., 198–199 (2012) 388–396.
- H.Y. Yen, Energy consumption of treating textile wastewater for in-factory reuse by H2O2/UV process, Desal. Wat. Treat., 57 (2016) 10537–10545.
- S.F. Kang, H.Y. Yen, C.H. Liao, Y.C. Yao, Decolorization and mineralization of textile effluent by H2O2/Ultraviolet processes, Environ. Eng. Sci., 27 (2010) 357–363.
- J.R. Bolton, K.G. Bircher, W. Tumas, C.A. Tolman, Figuresof- merit for the technical development and application of advanced oxidation technologies for both electric- and solardriven systems, Pure Appl. Chem., 73 (2001) 627–637.
- D. Salari, N. Daneshvar, F. Aghazadeh, A.R. Khataee, Application of artificial neural networks for modeling of the treatment of wastewater contaminated with methyl tert-butyl ether (MTBE) by UV/ H2O2 process, J. Hazard. Mater., 125 (2005) 205–210.
- M. Muruganandham, K. Selvam, M. Swaminathan, A comparative study of quantum yield and electrical energy per order (EEO) for advanced oxidative decolourisation of reactive azo dyes by UV light, J. Hazard. Mater., 144 (2007) 316–322.
- I. Arslan-Alaton, S. Shayin, T. Olmez-Hanci, The hydroxyl radical scavenging effect of textile preparation auxiliaries on the photochemical treatment of nonylphenol ethoxylate, Environ. Technol., 33 (2012) 419–427.
- Y. Zang, R. Farnood, Effects of hydrogen peroxide concentration and ultraviolet light intensity on methyl tert-butyl ether degradation kinetics, Chem. Eng. Sci., 60 (2005) 1641–1648.
- I. Michael-Kordatou, C. Michael, X. Duan, X. He, D.D. Dionysiou, M.A. Mills, D. Fatta-Kassinos, Dissolved effluent organic matter: Characteristics and potential implications in wastewater treatment and reuse applications, Water Res., 77 (2015) 213–248.
- N. De la Cruz, L. Esquius, D. Grandjean, A. Magnet, A. Tungler, L.F. de Alencastro, C. Pulgarin, Degradation of emergent contaminants by UV, UV/ H2O2 and neutral photo-Fenton at pilot scale in a domestic wastewater treatment plant, Water Res., 47 (2013) 5836–5845.