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review article

Critical Review on Bromate Formation during Ozonation and Control Options for Its Minimization

Morrison, Christina M.
•
Hogard, Samantha
•
Pearce, Robert
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June 26, 2023
Environmental Science & Technology

Ozone is a commonly applied disinfectant and oxidantin drinkingwater and has more recently been implemented for enhanced municipalwastewater treatment for potable reuse and ecosystem protection. Onedrawback is the potential formation of bromate, a possible human carcinogenwith a strict drinking water standard of 10 & mu;g/L. The formationof bromate from bromide during ozonation is complex and involves reactionswith both ozone and secondary oxidants formed from ozone decomposition,i.e., hydroxyl radical. The underlying mechanism has been elucidatedover the past several decades, and the extent of many parallel reactionsoccurring with either ozone or hydroxyl radicals depends stronglyon the concentration, type of dissolved organic matter (DOM), andcarbonate. On the basis of mechanistic considerations, several approachesminimizing bromate formation during ozonation can be applied. Removalof bromate after ozonation is less feasible. We recommend that bromatecontrol strategies be prioritized in the following order: (1) controlbromide discharge at the source and ensure optimal ozone mass-transferdesign to minimize bromate formation, (2) minimize bromate formationduring ozonation by chemical control strategies, such as ammoniumwith or without chlorine addition or hydrogen peroxide addition, whichinterfere with specific bromate formation steps and/or mask bromide,(3) implement a pretreatment strategy to reduce bromide and/or DOMprior to ozonation, and (4) assess the suitability of ozonation altogetheror utilize a downstream treatment process that may already be in place,such as reverse osmosis, for post-ozone bromate abatement. A one-size-fits-allapproach to bromate control does not exist, and treatment objectives,such as disinfection and micropollutant abatement, must also be considered.

  • Details
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Type
review article
DOI
10.1021/acs.est.3c00538
Web of Science ID

WOS:001018295100001

Author(s)
Morrison, Christina M.
Hogard, Samantha
Pearce, Robert
Mohan, Aarthi
Pisarenko, Aleksey N.
Dickenson, Eric R. V.
von Gunten, Urs  
Wert, Eric C.
Date Issued

2023-06-26

Publisher

AMER CHEMICAL SOC

Published in
Environmental Science & Technology
Subjects

Engineering, Environmental

•

Environmental Sciences

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Engineering

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Environmental Sciences & Ecology

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bromate

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ozonation

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human carcinogen

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dissolved organic matter

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bromide-containing waters

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ion-exchange-resin

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drinking-water

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waste-water

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advanced oxidation

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ozone decomposition

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potassium bromate

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activated carbon

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micropollutant abatement

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hydrogen-peroxide

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTQE  
Available on Infoscience
July 17, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/199188
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