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  • Volume 34, Issue 7-8

Modeling and risk analysis of bromate formation from ozonation of bromide-containing waters

Rengao Song, Roger Minear, Paul Westerhoff, Gary Amy
Published October 1996, 34 (7-8) 79-85;
Rengao Song
Department of Civil Engineering, University of Illinois, Urbana, IL 61801, USA
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Roger Minear
Department of Civil Engineering, University of Illinois, Urbana, IL 61801, USA
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Paul Westerhoff
Department of Environmental Engineering, University of Colorado, Boulder, CO 80309, USA
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Gary Amy
Department of Environmental Engineering, University of Colorado, Boulder, CO 80309, USA
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Abstract

Empirical bromate formation models were developed from batch ozonation data to simulate the effects of important water quality characteristics and treatment processes on bromate formation. Bromate formation was favored at high pH, bromide concentration, alkalinity, and ozone dose. On the other hand, increasing DOC and ammonia concentration decreased bromate formation. Validation of the bromate models demonstrated that the models accurately simulated bromate formation. Risk analysis of bromate formation was performed on 5 utilities in which ozone was used, and it was concluded that under typical ozonation conditions, the associated risk related to bromate formation could be as high as 10−3.

  • Risk analysis
  • modeling carcinogenicity
  • ozonation
  • bromate formalim
  • bromide
  • © IWA Publishing 1996

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Water Science and Technology: 2017 (2)
  Volume 34, Issue 7-8

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Modeling and risk analysis of bromate formation from ozonation of bromide-containing waters
Rengao Song, Roger Minear, Paul Westerhoff, Gary Amy
Water Science and Technology Oct 1996, 34 (7-8) 79-85;
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Modeling and risk analysis of bromate formation from ozonation of bromide-containing waters
Rengao Song, Roger Minear, Paul Westerhoff, Gary Amy
Water Science and Technology Oct 1996, 34 (7-8) 79-85;

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Keywords

risk analysis
modeling carcinogenicity
ozonation
bromate formalim
bromide
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