An investigation of the formation of chlorate and perchlorate during electrolysis using Pt/Ti electrodes: the effects of pH and reactive oxygen species and the results of kinetic studies

Jung, YJ; Baek, KW; Oh, BS; Kang, JW

HERO ID

755844

Reference Type

Journal Article

Year

2010

Language

English

PMID

20619871

HERO ID 755844
In Press No
Year 2010
Title An investigation of the formation of chlorate and perchlorate during electrolysis using Pt/Ti electrodes: the effects of pH and reactive oxygen species and the results of kinetic studies
Authors Jung, YJ; Baek, KW; Oh, BS; Kang, JW
Journal Water Research
Volume 44
Issue 18
Page Numbers 5345-5355
Abstract The characteristics of chlorate (ClO(3)(-)) and perchlorate (ClO(4)(-)) formation were studied during the electrolysis of water containing chloride ions (Cl(-)). The experiments were performed using an undivided Pt/Ti plate electrode under different pH conditions (pH 3.6, 5.5, 7.2, 8.0 and 9.0). ClO(3)(-) and ClO(4)(-) were formed during electrolysis in proportion to the Cl(-) concentration. The generation rates of ClO(3)(-) and ClO(4)(-) under acidic conditions (pH 3.6 and 5.5) were lower than in basic pH conditions (pH 7.2, 8.0 and 9.0). However, the pH of the solution did not influence the conversion of ClO(3)(-) to ClO(4)(-). The effects of intermediately formed oxidants on the production of ClO(3)(-) and ClO(4)(-) were observed using sodium thiosulfate (Na(2)S(2)O(3)) as the active chlorine scavenger and tertiary butyl alcohol (t-BuOH) as the hydroxyl radical (OH) scavenger. The results revealed that electrolysis reactions that involved active chlorine contributed dominantly to ClO(3)(-) production. The direct oxidation reaction rate of Cl(-) to ClO(3)(-) was 13%. The OH species that were intermediately formed during electrolysis were also found to significantly affect ClO(3)(-) and ClO(4)(-) production. The key formation pathways of ClO(3)(-) and ClO(4)(-) were studied using kinetic model development.
Doi 10.1016/j.watres.2010.06.029
Pmid 20619871
Wosid WOS:000289497600022
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science WOS:000289497600022
Is Public Yes
Language Text English
Keyword Chlorate (ClO(3)(-)); Perchlorate (ClO(4)(-)); Electrolysis; Active chlorine; Hydroxyl radical; Kinetic study
Is Qa No