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- W4386003353 abstract "In this study, a novel process Solar/Peroxymonosulfate (PMS)/Ferrate was proposed for disinfection of antibiotic-resistant bacteria (ARB) and antibiotic-resistant genes (ARGs). The Solar/PMS/Ferrate system showed high performance in the disinfection of ARB and ARGs in aquaculture wastewater. The total frequency of horizontal transfer of ARGs treated by Solar/PMS/Ferrate was lower than that by single-factor and double-factor disinfection. The reactive species including superoxide radical (O2•−), singlet oxygen (1O2) and high-valent iron (Fe(VI), Fe(V), and Fe(IV)) contributed to ARB inactivation. According to the quenching experiments, the free radicals hydroxyl radical (•OH) and sulfate radical (SO4•−) showed negligible contribution to the ARB elimination though they were generated in the treatment system based on the electron spin resonance (EPR) analysis. Higher solar intensity and oxidants dosages, as well as lower initial density of ARB led to higher reaction rate of ARB removal. Acidic and alkaline conditions were conducive to the ARB removal by Solar/PMS/Ferrate, and the efficiency of ARB inactivation was the highest at pH value of 5. The anions NO3– (nitrate), HCO3– (carbonate), SO42- (sulfate), Br- (bromide), PO43- (phosphate) and the natural organic matter (humic acid) inhibited the inactivation of ARB possibly due to the competition of active species. The results of this study show that the treatment process Solar/PMS/Ferrate has good potential for disinfection of ARB and ARGs." @default.
- W4386003353 created "2023-08-20" @default.
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- W4386003353 date "2023-10-01" @default.
- W4386003353 modified "2023-10-07" @default.
- W4386003353 title "Removal of antibiotic-resistant bacteria and genes by Solar-activated Ferrate/ Peroxymonosulfate: Efficiency in aquaculture wastewater and mechanism" @default.
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