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Identifying the chloroperoxyl radical in acidified sodium chlorite solution.

Authors :
Kawata H
Kohno M
Nukina K
Horiuchi I
Goda H
Kuwahara T
Yoshimori K
Miyaji A
Kamachi T
Yoshikawa T
Source :
PloS one [PLoS One] 2021 May 26; Vol. 16 (5), pp. e0252079. Date of Electronic Publication: 2021 May 26 (Print Publication: 2021).
Publication Year :
2021

Abstract

The present study identified the active radical species in acidic sodium chlorite and investigated the feasibility of quantifying these species with the diethylphenylenediamine (DPD) method. Electron spin resonance (ESR) spectroscopy was used to identify the active species generated in solutions containing sodium chlorite (NaClO2). The ESR signal was directly observed in an acidified sodium chlorite (ASC) aqueous solution at room temperature. This ESR signal was very long-lived, indicating that the radical was thermodynamically stable. The ESR parameters of this signal did not coincide with previously reported values of the chlorine radical (Cl●) or chlorine dioxide radical (O = Cl●-O and O = Cl-O●). We refer to this signal as being from the chloroperoxyl radical (Cl-O-O●). Quantum chemical calculations revealed that the optimal structure of the chloroperoxyl radical is much more thermodynamically stable than that of the chlorine dioxide radical. The UV-visible spectrum of the chloroperoxyl radical showed maximum absorbance at 354 nm. This absorbance had a linear relationship with the chloroperoxyl radical ESR signal intensity. Quantifying the free chlorine concentration by the DPD method also revealed a linear relationship with the maximum absorbance at 354 nm, which in turn showed a linear relationship with the chloroperoxyl radical ESR signal intensity. These linear relationships suggest that the DPD method can quantify chloroperoxyl radicals, which this study considers to be the active species in ASC aqueous solution.<br />Competing Interests: The authors have read the journal’s policy and have the following competing interests: HK, KN, IH, and HG are employees of Sankei Co. Ltd. This does not alter our adherence to PLOS ONE policies on sharing data and materials. There are no patents, products in development or marketed products associated with this research to declare.

Details

Language :
English
ISSN :
1932-6203
Volume :
16
Issue :
5
Database :
MEDLINE
Journal :
PloS one
Publication Type :
Academic Journal
Accession number :
34038445
Full Text :
https://doi.org/10.1371/journal.pone.0252079