4.7 Article

Both Fe(IV) and Radicals Are Active Oxidants in the Fe(II)/Peroxydisulfate Process

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS
Volume 7, Issue 3, Pages 219-224

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.estlett.0c00025

Keywords

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Funding

  1. National Natural Science Foundation of China [21976133]

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The question of whether Fe(IV) or SO4 center dot- is the dominant intermediate in the Fe(II)-activated peroxydisulfate process [Fe(II)/PDS process] remains unanswered. In this study, besides Fe(IV), SO4 center dot- and HO center dot were shown to be produced in the Fe(II)/PDS process by using multiple probes [dimethyl sulfoxide, methyl phenyl sulfoxide, p-nitrobenzoic acid (p-NBA), and benzoic acid (BA)]. The removal of p-NBA and BA and the influence of BA on the yield of methyl phenyl sulfone (PMSO2) indicated that the major oxidizing intermediate changed from Fe(IV) to SO4 center dot-/HO center dot with an increase in the PDS/Fe(II) molar ratio at pH 3.0. Fe(IV), SO4 center dot-, and HO center dot were all involved in this process at pH 3.0-6.5, but their available amounts that contributed to abating organic contaminants decreased with an increase in pH considering the influence of pH on the generation of PMSO2 and p-hydroxybenzoic acid. Furthermore, Fe(IV), SO4 center dot-, and HO center dot contributed differently to abating different organic contaminants because of the different reactivities of these oxidizing oxidants toward different organic contaminants. Overall, this study demonstrates that multiple oxidizing species [Fe(IV), SO4 center dot-, and HO center dot] are generated in the Fe(II)/PDS process, which was significant for the application of this process and understanding the mechanisms of Fe(II)-activated peroxide processes.

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