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Ozone and chlorine reactions with dissolved organic matter - Assessment of oxidant-reactive moieties by optical measurements and the electron donating capacities
Önnby, L., Salhi, E., McKay, G., Rosario-Ortiz, F. L., & von Gunten, U. (2018). Ozone and chlorine reactions with dissolved organic matter - Assessment of oxidant-reactive moieties by optical measurements and the electron donating capacities. Water Research, 144, 64-75. https://doi.org/10.1016/j.watres.2018.06.059
Reaction of bromine and chlorine with phenolic compounds and natural organic matter extracts – electrophilic aromatic substitution and oxidation
Criquet, J., Rodriguez, E. M., Allard, S., Wellauer, S., Salhi, E., Joll, C. A., & von Gunten, U. (2015). Reaction of bromine and chlorine with phenolic compounds and natural organic matter extracts – electrophilic aromatic substitution and oxidation. Water Research, 85, 476-486. https://doi.org/10.1016/j.watres.2015.08.051
Determinants of disinfectant pretreatment efficacy for nitrosamine control in chloraminated drinking water
McCurry, D. L., Krasner, S. W., von Gunten, U., & Mitch, W. A. (2015). Determinants of disinfectant pretreatment efficacy for nitrosamine control in chloraminated drinking water. Water Research, 84, 161-170. https://doi.org/10.1016/j.watres.2015.07.024
Chlorination of bromide-containing waters: enhanced bromate formation in the presence of synthetic metal oxides and deposits formed in drinking water distribution systems
Liu, C., von Gunten, U., & Croué, J. P. (2013). Chlorination of bromide-containing waters: enhanced bromate formation in the presence of synthetic metal oxides and deposits formed in drinking water distribution systems. Water Research, 47(14), 5307-5315. https://doi.org/10.1016/j.watres.2013.06.010
Quantitative structure–activity relationships (QSARs) for the transformation of organic micropollutants during oxidative water treatment
Lee, Y., & von Gunten, U. (2012). Quantitative structure–activity relationships (QSARs) for the transformation of organic micropollutants during oxidative water treatment. Water Research, 46(19), 6177-6195. https://doi.org/10.1016/j.watres.2012.06.006
Formation of assimilable organic carbon during oxidation of natural waters with ozone, chlorine dioxide, chlorine, permanganate, and ferrate
Ramseier, M. K., Peter, A., Traber, J., & von Gunten, U. (2011). Formation of assimilable organic carbon during oxidation of natural waters with ozone, chlorine dioxide, chlorine, permanganate, and ferrate. Water Research, 45(5), 2002-2010. https://doi.org/10.1016/j.watres.2010.12.002
Oxidative transformation of micropollutants during municipal wastewater treatment: comparison of kinetic aspects of selective (chlorine, chlorine dioxide, ferrate<SUP>VI</SUP>, and ozone) and non-selective oxidants (hydroxyl radical)
Lee, Y., & von Gunten, U. (2010). Oxidative transformation of micropollutants during municipal wastewater treatment: comparison of kinetic aspects of selective (chlorine, chlorine dioxide, ferrateVI, and ozone) and non-selective oxidants (hydroxyl radical). Water Research, 44(2), 555-566. https://doi.org/10.1016/j.watres.2009.11.045
Reactions of chlorine with inorganic and organic compounds during water treatment—kinetics and mechanisms: a critical review
Deborde, M., & von Gunten, U. (2008). Reactions of chlorine with inorganic and organic compounds during water treatment—kinetics and mechanisms: a critical review. Water Research, 42(1–2), 13-51. https://doi.org/10.1016/j.watres.2007.07.025
Oxidative elimination of cyanotoxins: comparison of ozone, chlorine, chlorine dioxide and permanganate
Rodríguez, E., Onstad, G. D., Kull, T. P. J., Metcalf, J. S., Acero, J. L., & von Gunten, U. (2007). Oxidative elimination of cyanotoxins: comparison of ozone, chlorine, chlorine dioxide and permanganate. Water Research, 41(15), 3381-3393. https://doi.org/10.1016/j.watres.2007.03.033