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pH/Temperature tuning selective generation of SO4•-/HO•/FeⅣ in Fe2+-activated peroxide water systems
Binghua Jing1, Hongyu Dong2, Didi Li3
1Guangdong Provincial Key Laboratory of Wastewater Information Analysis and Early Warning, Advanced Interdisciplinary Institute of Environment and Ecology, School of Technology for Sustainability, Beijing Normal University, Zhuhai 519087, PR China; School of Environment, Beijing Normal University, Beijing 100875, PR China.
Abstract:
Active species (AS) are key in Fenton/Fenton-like reactions. The unclear AS category and generation order of SO4•- and HO• in the reaction of peroxymonosulfate (PMS) and Fe2+, as well as the quantity of SO4•- produced in the Fe2+/peroxydisulfate (PDS) system, limiting the practical application of selective AS generation for targeted pollutant degradation. Understanding the pathway of PMS/PDS/H2O2 activated by Fe2+ for SO4•-, HO•, and FeⅣ generation is critical for the selective generation of AS by adjusting reaction conditions of pH or temperature. Results suggested that SO4•- was the sole PMS active product at T < 340 K and pH < 12, subsequently driving HO• generation from H2O, while FeⅣO2+ was rapidly generated due to the chemical interaction between Fe2+ and PMS. In Fe2+/PDS system, one SO4•- instead of reputed two SO4•- was generated since the coactions of Fe2+ and SO4 moiety, while FeⅣO2+ is generated when H2O acts as reactant at pH 0 -7. In Fe2+/H2O2 system, FeⅣO2+ can only be formed stem from the pre-reaction of HO• generation. Furthermore, Tuning the reactant concentration could convert the AS category. This work advances the cognition of Fenton/Fenton-like microcosmic reactions, and is positive to the future design of experimental and industrial processes.
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