References
- E. Agus, V. Nikolay, D.L. Sedlak, Disinfection by-products
and their potential impact on the quality of water produced
by desalination systems: a literature review, Desalination, 237
(2009) 214–237.
- C. Zwiener, S.D. Richardson, Analysis of disinfection by-products
in drinking water by LC-MS and related MS techniques,
TrAC, Trends Anal. Chem., 24 (2005) 1481–1490.
- P.C. Singer, Formation and Control of Disinfection By-products
in Drinking Water, AWWA, USA, 1999 ISBN 0-89867-998-2.
- R.J. Bull, F.C. Kopfler, Health Effects of Disinfection and
Disinfection Byproducts, AWWA Research Foundation, Denver,
CO, 1991.
- Environmental Health Criteria 216, WHO, Disinfectants and
Disinfection by-products, ISBN 9241572167, 2000, pp. 30–31.
Available at: http://www.who.int/ipcs/publications/ehc/ehc_216/en/.
- D.L. Macalady, J.H. Carpenter, C.A. Moore, Sunlight induced
bromate formation in chlorinated seawater, Science, 195 (1977)
1335–1337.
- 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.
- D.W. Margerum, K.E. Huff Hartz, Role of halogen (I) Cation -
transfer mechanisms in water chlorination in the presence of
bromide ion, J. Environ. Monit., 4 (2002) 20–26.
- R.C. Beckwith, D.W. Margerum, Kinetics of hypobromous
acid disproportionation, Inorg. Chem., 36 (1997) 3754–3760.
- C. Liu, U.V. Gunten, J.P. Croué, Enhanced bromate formation
during chlorination of bromide-containing waters in the
presence of CuO: catalytic disproportionation of hypobromous
acid, Environ. Sci. Technol., 46 (2012) 11054–11061.
- E.M. Aieta, J.D. Berg, A review of chlorine dioxide in drinking
water treatment, J. AWWA, 78 (1986) 62–72.
- EPA Guidance Manual Alternative Disinfectants and Oxidants,
EPA 815-R-99-014, April 1999, pp. 4–34.
- N. Gonce, A.E. Voudrias, Removal of chlorite and chlorate
ions from water using granular activated carbon, Water Res.,
28 (1994) 1059–1069.
- K.S. Werdehoff, P.C. Singer, Chlorine dioxide effects on THMFP,
TOXEP and the formation inorganic by-products, J. AWWA,
79 (1987) 107–113.
- S.D. Richardson, A.D. Thruston, T.W. Collette, K.S. Patterson,
B.W. Lykins, G. Majetich, Y. Zhang, Multispectral identification
of chlorine dioxide disinfection by-products in drinking water,
Environ. Sci. Technol., 28 (1994) 592–599.
- G. Gorden, Water Chemistry of Oxy-chlorine Species, Proc.
2nd Int. Symposium on chlorine dioxide: drinking water issues
Houston, 1992.
- G.R. Finch, Effect of Various Disinfection Methods on the
Inactivation of Cryptosporidium (90734), AWWA Res. Fdn.,
Denver, 1997.
- L.R.J. Liyanage, G.R. Finch, M. Belosevic, Effect of aqueous
chlorine and oxychlorine compounds on cryptosporidium
parvum oocysts, Environ. Sci. Technol., 31 (1997) 1992–1994.
- N. Narkis, Y. Kott, Comparison between chlorine dioxide
and chlorine for use as a disinfectant of wastewater effluents,
Water Sci. Technol., 26 (1992) 1483–1492.
- W.R. Knocke, Alternative Oxidants for the Removal of Solute
Iron and Manganese, AWWA Res. Fdn., Denver, 1990.
- G.A. Gagnon, J.L. Rand, K.C. O’leary, A.C. Rygel, C. Chauret,
R.C. Andrews, Disinfectant efficacy of chlorite and chlorine
dioxide in drinking water biofilms, Water Res., 39 (2005)
1809–1817.
- D. Couri, M.S. Abdel-Rahman, R.J. Bull, Toxicological effects of
chlorine dioxide, chlorite and chlorate, Environ. Health Perspect.,
46 (1982) 13–17.
- B. Helene, M. Prévost, R. Desjardins, P. Lafrance, D.J. Gates,
Chlorite and chlorate ion variability in distribution systems,
J. AWWA, 94 (2002) 96–105.
- G. Gordon, B. Slootmackers, S. Tachiyashiki, D.W. Wood III,
Minimizing chlorite ion and chlorate ion in water treated with
chlorine dioxide, J. AWWA, 82 (1990) 160–165.
- F.W. Pontius, Complying with the new drinking water quality
regulations, J. AWWA, 82 (1990) 32–52.
- World Health Organisation, Guidelines for Drinking Water
Quality; World Health Organization, Geneva, Switzerland,
2008.
- F. Al-Otoum, M.A. Al-Ghouti, T.A. Ahmed, M. Abu-Dieyeh,
M. Ali, Disinfection by-products of chlorine dioxide (chlorite,
chlorate, and trihalomethanes): occurrence in drinking water in
Qatar, Chemosphere, 164 (2016) 649–656.
- R.A. Larson, E.J. Weber, Reaction Mechanisms in Environmental
Organic Chemistry, Lewis Publishers, Boca Raton, FL, 1994.
- H.S. Weinberg, C.A. Delcomyn, V. Unnam, Bromate in
chlorinated drinking waters: occurrence and implications for
future regulation, Environ. Sci. Technol., 37 (2003) 3104–3110.
- J. Han, X. Zhang, J. Liu, X. Zhu, T. Gong, Characterization
of halogenated DBPs and identification of new DBPs
trihalomethanols in chlorine dioxide treated drinking water
with multiple extractions, J. Environ. Sci., 58 (2017) 83–92.
- M.S. Abdel-Rahman, D. Couri, R.J. Bull, The kinetics of chlorite
and chlorate in the rat, J. Am. Coll, Toxicol., 3 (1984) 261–267.
- J.R. Lubbers, S. Chauhan, J.K. Miller, J.R. Bianchine, The effect
of chronic administration of chlorine dioxide, chlorite and
chlorate to normal healthy adult male volunteers, J. Environ.
Pathol. Toxicol. Oncol., 5 (1984) 229–238.
- G.E. Michael, R.K. Miday, J.P. Bercz, R.G. Miller, D.G. Greathouse,
D.F. Kraemer, J.B. Lucas, ClO2 water disinfection: a
prospective epidemiology study, Arch. Environ. Health, 36 (1981)
20–27.
- R.W. Tuthill, R.A. Giusti, G.S. Moore, E.J. Calabrese, Health
effects among newborns after prenatal exposure to ClO2-disinfected drinking water, Environ. Health Perspect., 46 (1982)
39–45.
- S. Kanitz, Y. Franco, V. Patrone, M. Caltabellotta, E. Raffo,
C. Riggi, D. Timitilli, G. Ravera, Association between drinking
water disinfection and somatic parameters at birth, Environ.
Health Perspect., 104 (1996) 516–520.
- R. Al-Rasheed, E. Althobity, S. Al-Sulami, A. Al-Ruwished,
Influence of different disinfection methods on the presence
of bromate and chlorate in the product water of seawater
desalination plants, Proc. IDA World Congress – Atlantis,
The Palm – Dubai, UAE, November 7–12, 2009.
- APHA (American Public Health Association), Standard
Methods for the Examination of Water and Wastewater,
20th ed., American Public Health Association/American
Water Works Association/Water Pollution Control Federation,
Washington, D.C., 1995.
- USEPA Method 300.1, Determination of Inorganic Anions
in Drinking Water by Ion Chromatography, Revision 1.0.,
USEPA, 1997, EPA/600/R-98/118.
- Monitoring Residual Oxidant, 10 things you need to know-
Palintest presentation at WWEM, Telford international centre,
UK, 5–6th November 2014.
- Standard Methods for the Examination of Water and
Wastewater, 20th ed., American Public Health association
(APHA), American Water Works Association (AWWA) and
Water Pollution Control (WPC), New York, 1998.
- P. Ufermann, H. Petersen, M. Exner, Disinfection aboard cruise
liners and naval units: formation of disinfection by-products
using chlorine dioxide in different qualities of drinking water,
Int. J. Hyg. Environ. Health, 215 (2011) 86–90.
- R.J. Garcia-Villanova, M.V.O. Dantas Leite, J.M. Hernández
Hierro, S. de Castro Alfageme, C.G. Hernández, Occurrence of
bromate, chlorite and chlorate in drinking waters disinfected
with hypochlorite reagents. Tracing their origins, Sci. Total
Environ., 408 (2010) 2616–2620.
- M. Bolyard, P.S. Fair, D.P. Hautman, Occurrence of chlorate in
hypochlorite solutions used for drinking water disinfection,
Environ. Sci. Technol., 26 (1992) 1663–1665.
- S. Bouland, J.P. Duguet, A. Montiel, Evaluation of bromate
ions level introduced by sodium hypochlorite during postdisinfection
of drinking water, Environ. Technol., 26 (2005)
121–126.
- M.J. MacPhee, D.A. Cornwell, R. Brown, Trace Contaminants in
Drinking Water Chemicals: AWWA, 2002, 232 p.