References
- C.G. Daughton, T.A. Ternes, Pharmaceuticals and personal
care products in the environment: agents of subtle change?
Environ. Health. Persp., 107 (1999) 907.
- I. Kim, N. Yamashita, H. Tanaka, Photodegradation of pharmaceuticals
and personal care products during UV and UV/
H2O2 treatments, Chemosphere, 77 (2009) 518–525.
- V.J. Pereira, H.S. Weinberg, K.G. Linden, P.C. Singer, UV
degradation kinetics and modeling of pharmaceutical compounds
in laboratory grade and surface water via direct and
indirect photolysis at 254 nm, Environ. Sci. Technol., 41 (2007)
1682–1688.
- W. Seitz, J.Q. Jiang, W. Schulz, W.H. Weber, D. Maier, M. Maier,
Formation of oxidation by-products of the iodinated X-ray
contrast medium iomeprol during ozonation, Chemosphere,
70 (2008) 1238–1246.
- S. Pérez, P. Eichhorn, M.D. Celiz, D.S. Aga, Structural characterization
of metabolites of the X-ray contrast agent iopromide
in activated sludge using ion trap mass spectrometry, Anal.
Chem., 78 (2006) 1866–1874.
- M. Schulz, D. Löffler, M. Wagner, T.A. Ternes, Transformation
of the X-ray contrast medium iopromide in soil and biological
wastewater treatment, Environ. Sci. Technol., 42 (2008) 7207–
7217.
- M.N. Sugihara, D. Moeller, T. Paul, T.J. Strathmann, TiO2-photocatalyzed
transformation of the recalcitrant X-ray contrast
agent diatrizoate, Appl. Catal. B-Environ., 129 (2013) 114–122.
- T.A. Ternes, R. Hirsch, Occurrence and behavior of X-ray contrast
media in sewage facilities and the aquatic environment,
Environ. Sci. Technol., 34 (2000) 2741–2748.
- S.E. Duirk, C. Lindell, C.C. Cornelison, J. Kormos, T.A. Ternes,
M. Attene-Ramos, S.D. Richardson, Formation of toxic iodinated
disinfection by-products from compounds used in medical
imaging, Environ. Sci. Technol., 45 (2011) 6845–6854.
- C. Jeong, Drinking water disinfection by-products: toxicological
impacts and biological mechanisms induced by individual
compounds or as complex mixtures, University of Illinois at
Urbana-Champaign, 2014.
- S.D. Richardson, F. Fasano, J.J. Ellington, F.G. Crumley, K.M.
Buettner, J.J. Evans, A.B. McKague, Occurrence and mammalian
cell toxicity of iodinated disinfection byproducts in drinking
water, Environ. Sci. Technol., 42 (2008) 8330–8338.
- M.J. Plewa, E.D. Wagner, S.D. Richardson, A.D. Thruston, Y.T.
Woo, A.B. McKague, Chemical and biological characterization
of newly discovered iodoacid drinking water disinfection
byproducts, Environ. Sci. Technol., 38 (2004) 4713–4722.
- Y. Bichsel, U. Von Gunten, Formation of iodo-trihalomethanes
during disinfection and oxidation of iodide-containing waters,
Environ. Sci. Technol., 34 (2000) 2784–2791.
- S.D. Richardson, C. Postigo, D. Barceló, Emerging organic contaminants
and human health, The Handbook of Environmental
Chemistry, 2012, pp. 93–137.
- F.X. Tian, B. Xu, Y.L. Lin, C.Y. Hu, T.Y. Zhang, N.Y. Gao, Photodegradation
kinetics of iopamidol by UV irradiation and
enhanced formation of iodinated disinfection by-products in
sequential oxidation processes, Water Res., 58 (2014) 198–208.
- T. Ye, B. Xu, Z. Wang, T.Y. Zhang, C.Y. Hu, L. Lin, N.Y. Gao,
Comparison of iodinated trihalomethanes formation during
aqueous chlor(am)ination of different iodinated X-ray contrast
media compounds in the presence of natural organic matter,
Water Res., 66 (2014) 390–398.
- T.Y. Zhang, B. Xu, C.Y. Hu, Y.L. Lin, L. Lin, T. Ye, F.X. Tian, A
comparison of iodinated trihalomethane formation from chlorine,
chlorine dioxide and potassium permanganate oxidation
processes, Water Res., 68 (2015) 394–403.
- T.Y. Zhang, Y.L. Lin, A.Q. Wang, F.X. Tian, B. Xu, S.J. Xia, N.Y.
Gao, Formation of iodinated trihalomethanes during UV/
chloramination with iodate as the iodine source, Water Res., 98
(2016) 199–205.
- Y. Bichsel, U. Von Gunten, Oxidation of iodide and hypoiodous
acid in the disinfection of natural waters, Environ. Sci. Technol.,
33 (1999) 4040–4045.
- T. Ye, B. Xu, Y.L. Lin, C.Y. Hu, L. Lin, T.Y. Zhang, N.Y. Gao, Formation
of iodinated disinfection by-products during oxidation
of iodide-containing waters with chlorine dioxide, Water Res.,
47 (2013) 3006–3014.
- T. Ye, B. Xu, Y.L. Lin, C.Y. Hu, S.J. Xia, L. Lin, N.Y. Gao, Formation
of iodinated disinfection by-products during oxidation
of iodide-containing water with potassium permanganate, J.
Hazard. Mater., 241 (2012) 348–354.
- E.M. Smith, M.J. Plewa, C.L. Lindell, S.D. Richardson, W.A.
Mitch, Comparison of byproduct formation in waters treated
with chlorine and iodine: relevance to point-of-use treatment,
Environ. Sci. Technol., 44 (2010) 8446–8452.
- R.D. Kashinkunti, K.G. Linden, G.A. Shin, D.H. Metz, M.D.
Sobsey, M.C. Moran, A.M. Samuelson, Investigating multibarrier
inactivation for Cincinnati-UV, by-products, and biostability,
J. Am. Water. Works. Ass., 96 (2004) 114–127.
- A.D. Dotson, C.E. Rodriguez, K.G. Linden, UV disinfection
implementation status in US water treatment plants, J. Am.
Water. Works. Ass., 104 (2012) 77–78.
- Y.S. Shen, Y. Ku, K.C. Lee, The effect of light absorbance on the
decomposition of chlorophenols by ultraviolet radiation and
UV/H2O2 processes, Water Res., 29 (1995) 907–914.
- F.J. Benitez, J.L. Acero, F.J. Real, S. Roman, Oxidation of MCPA
and 2, 4-D by UV radiation, ozone, and the combinations UV/
H2O2 and O3/H2O2, J. Environ. Sci. Heal., B 39 (2004) 393–409.
- A. Lopez, A. Bozzi, G. Mascolo, J. Kiwi, Kinetic investigation
on UV and UV/H2O2 degradations of pharmaceutical intermediates
in aqueous solution, J. Photoch. Photobio. A, 156 (2003)
121–126.
- A. Hassen, M. Mahrouk, H. Ouzari, M. Cherif, A. Boudabous,
J.J. Damelincourt, UV disinfection of treated wastewater in a
large-scale pilot plant and inactivation of selected bacteria in a
laboratory UV device, Bioresource Technol., 74 (2000) 141–150.
- A.D. Shah, A.D. Dotson, K.G. Linden, W.A. Mitch, Impact of
UV disinfection combined with chlorination/chloramination
on the formation of halonitromethanes and haloacetonitriles
in drinking water, Environ. Sci. Technol., 45 (2011) 3657–3664.
- C. Lee, C. Schmidt, J. Yoon, U. Von Gunten, Oxidation of N-nitrosodimethylamine
(NDMA) precursors with ozone and
chlorine dioxide: kinetics and effect on NDMA formation
potential, Environ. Sci. Technol., 41 (2007) 2056–2063.
- Y. Qian, W. Wang, J.M. Boyd, M. Wu, S.E. Hrudey, X.F. Li,
UV-induced transformation of four halobenzoquinones in
drinking water, Environ. Sci. Technol., 47 (2013) 4426–4433.
- W. Liu, L.M. Cheung, X. Yang, C. Shang, THM, HAA and
CNCl formation from UV irradiation and chlor(am)ination of
selected organic waters, Water Res., 40 (2006) 2033–2043.
- W. Liu, Z. Zhang, X. Yang, Y. Xu, Y. Liang, Effects of UV irradiation
and UV/chlorine co-exposure on natural organic matter
in water, Sci. Total Environ., 414 (2012) 576–584.
- S. Canonica, L. Meunier, U. Von Gunten, Phototransformation
of selected pharmaceuticals during UV treatment of drinking
water, Water Res., 42 (2008) 121–128.
- F.J. Beltran, G. Ovejero, J.F. Garcia-Araya, J. Rivas, Oxidation
of polynuclear aromatic hydrocarbons in water. 2. UV radiation
and ozonation in the presence of UV radiation, Ind. Eng.
Chem. Res., 34 (1995) 1607–1615.
- F. Yuan, C. Hu, X. Hu, J. Qu, M. Yang, Degradation of selected
pharmaceuticals in aqueous solution with UV and UV/H2O2,
Water Res., 43 (2009) 1766–1774.
- E.J. Rosenfeldt, K.G. Linden, S. Canonica, U. Von Gunten,
Comparison of the efficiency of OH radical formation during
ozonation and the advanced oxidation processes O3/H2O2 and
UV/H2O2, Water Res., 40 (2006) 3695–3704.
- APHA, AWWA, WEF, Standard methods for the examination
of water and wastewater, 20th ed., American Public Health
Association, Washington, DC, 1998.
- P. Sajonz, J. Bookalam, R.A. Miller, Separation of periodate,
iodate and iodide on a C-18 stationary phase. Dependence of
the retention on the temperature and solvent composition.
Monitoring of an oxidative cleavage reaction, Chromatographia,
64 (2006) 635–640.
- Z. Wang, Y.L. Lin, B. Xu, S.J. Xia, T.Y. Zhang, N.Y. Gao, Degradation
of iohexol by UV/chlorine process and formation of
iodinated trihalomethanes during post-chlorination, Chem.
Eng. J., 283 (2016) 1090–1096.
- D. Munch, D. Hautman, Method 551.1: Determination of Chlorination
Disinfection Byproducts, Chlorinated Solvents, and
Halogenated Pesticides/ Herbicides in Drinking Water by
Liquid-Liquid Extraction and Gas Chromatography with Electron-
Capture Detection, USEPA, Cincinnati, OH, 1995.
- R. Salgado, V.J. Pereira, G. Carvalho, R. Soeiro, V. Gaffney, C.
Almeida, A. Oehmen, Photodegradation kinetics and transformation
products of ketoprofen, diclofenac and atenolol in pure
water and treated wastewater, J. Hazard. Mater., 244 (2013)
516–527.
- N.H. Phillip, E. Gürten, V. Diyamandoğlu, Transformation of
bromine species during decomposition of bromate under UV
light from low pressure mercury vapor lamps, Ozone Sci. Eng.,
28 (2006) 217–228.
- M. Kulovaara, N. Corin, P. Backlund, J. Tervo, Impact of
UV254-radiation on aquatic humic substances, Chemosphere,
33 (1996) 783–790.
- J. Jeong, J. Jung, W.J. Cooper, W. Song, Degradation mechanisms
and kinetic studies for the treatment of X-ray contrast
media compounds by advanced oxidation/reduction processes,
Water Res., 44 (2010) 4391–4398.
- S. Pérez, P. Eichhorn, V. Ceballos, D. Barceló, Elucidation of
phototransformation reactions of the X-ray contrast medium
iopromide under simulated solar radiation using UPLC-ESIQqTOF-
MS, J. Mass Spectrum., 44 (2009) 1308–1317.
- J.C. Nagy, K. Kumar, D.W. Margerum, Nonmetal redox kinetics:
oxidation of iodide by hypochlorous acid and by nitrogen
trichloride measured by the pulsed-accelerated-flow method,
Inorg. Chem., 27 (1988) 2773–2780.
- B. Cancho, C. Fabrellas, A. Diaz, F. Ventura, M.T. Galceran,
Determination of the odor threshold concentrations of iodinated
trihalomethanes in drinking water, J. Agr. Food Chem., 49
(2001) 1881–1884.
- G. Hua, D.A. Reckhow, Evaluation of bromine substitution factors
of DBPs during chlorination and chloramination, Water
Res., 46 (2012) 4208–4216.
- Z. Wang, B. Xu, Y.L. Lin, C.Y. Hu, F.X. Tian, T.Y. Zhang, N.Y.
Gao, A comparison of iodinated trihalomethane formation
from iodide and iopamidol in the presence of organic precursors
during monochloramination, Chem. Eng. J., 257 (2014)
292–298.
- K. Kumar, D.W. Margerum, Kinetics and mechanism of general-
acid-assisted oxidation of bromide by hypochlorite and
hypochlorous acid, Inorg. Chem., 26 (1987) 2706–2711.
- R.C. Troy, D.W. Margerum, Non-metal redox kinetics: Hypobromite
and hypobromous acid reactions with iodide and with
sulfite and the hydrolysis of bromosulfate, Inorg. Chem., 30
(1991) 3538–3543.