De Watergroep, a Flemish drinking water utility, aims to optimize the ozonation process at the Kluizen surface waterworks in order to obtain sufficient inactivation of pathogenic micro-organisms while minimizing the formation of bromate. In literature, the inactivation of micro-organisms is described as a first order process in ozone exposure (ozone concentration multiplied by exposure time or CT value). In the full-scale plant, the ozone exposure was determined at different temperatures and ozone doses, and an empirical relation between ozone exposure, ozone dose and temperature was derived. Based on the results, the optimum ozone dose required to obtain a Log 2 removal of viruses and a Log 1 removal of Giardia was determined as a function of temperature. Bromate formation was found to be dependent on the ozone dose rather than on the CT value. Therefore, an empirical relation between bromate formation, ozone dose and temperature was established. Bromate formation was found to be far below the legal standard of 10 μg/L when the optimum ozone dose, required to achieve the disinfection goals for viruses and Giardia, is applied.
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Research Article|
September 12 2013
Optimization of the ozone dosage at the drinking water treatment plant of Kluizen Available to Purchase
Jan Cromphout;
1Department of Water Technology, De Watergroep, Vooruitgangstraat 189, 1030 Brussels, Belgium
E-mail: [email protected]
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Stefanie Goethals;
Stefanie Goethals
2Department of Quality Control, De Watergroep, Boudewijnstraat 25, 9000 Ghent, Belgium
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Liesbeth Verdickt
Liesbeth Verdickt
1Department of Water Technology, De Watergroep, Vooruitgangstraat 189, 1030 Brussels, Belgium
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Water Supply (2013) 13 (6): 1569–1575.
Article history
Received:
March 20 2013
Accepted:
May 28 2013
Citation
Jan Cromphout, Stefanie Goethals, Liesbeth Verdickt; Optimization of the ozone dosage at the drinking water treatment plant of Kluizen. Water Supply 1 November 2013; 13 (6): 1569–1575. doi: https://doi.org/10.2166/ws.2013.170
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