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Study on Fe(VI) species as a disinfectant: Quantitative evaluation and modeling for inactivating Escherichia coli

  • Min Cho
  • , Yunho Lee
  • , Wonyong Choi
  • , Hyenmi Chung
  • , Jeyong Yoon*
  • *Corresponding author for this work
  • Seoul National University
  • Pohang University of Science and Technology
  • National Institute of Environmental Research

Research output: Contribution to journalJournal articlepeer-review

Abstract

Ferrate (Fe(VI)) has high potentials as a multi-purpose water treatment chemical acting as an oxidant, coagulant, and disinfectant, but little detail has been reported concerning its biocidal ability. In this study, the inactivation efficiencies of three Fe(VI) species (HxFeO4x-2, x = 0, 1, 2) are quantified using Escherichia coli as a model microorganism. E. coli inactivation by Fe(VI) was performed in solutions buffered with 25 mM phosphate in the pH range of 5.6-8.2 and at 25 °C. Kinetics of E. coli inactivation were successfully fitted to the Modified Delayed Chick-Watson model in the tested pH range, indicating that log inactivation level of E. coli is linearly proportional to exposure amount of E. coli to Fe(VI). The rate constant of E. coli inactivation by Fe(VI) (kobs) that was obtained from the linear regression increased non-linearly from 0.33 to 6.25 l(mg min)-1 with decreasing pH from 8.2 to 5.6. From the measured pH dependency of kobs and the known acidity constants of Fe(VI) species (p Ka, H2 FeO4 = 3.50 and p Ka, HFeO4- = 7.23), HFeO4- and H2FeO4 were found to be 3 and 265 times as effective as FeO42- in E. coli inactivation, respectively.

Original languageEnglish
Pages (from-to)3580-3586
Number of pages7
JournalWater Research
Volume40
Issue number19
DOIs
StatePublished - 2006.11

Keywords

  • E. coli
  • Ferrate (Fe(VI))
  • Inactivation
  • Modified Delayed Chick-Watson model

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