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Comparison of different disinfection processes in the effective removal of antibiotic-resistant bacteria and genes
Authors:Junsik Oh  Dennis Espineli Salcedo  Carl Angelo Medriano and Sungpyo Kim
Institution:Program in Environmental Technology and Policy, Korea University, 2511 Sejong-ro, Sejong 339-700, Korea;Program in Environmental Technology and Policy, Korea University, 2511 Sejong-ro, Sejong 339-700, Korea;Program in Environmental Technology and Policy, Korea University, 2511 Sejong-ro, Sejong 339-700, Korea;Program in Environmental Technology and Policy, Korea University, 2511 Sejong-ro, Sejong 339-700, Korea;Department of Environmental Engineering, College of Science and Technology, Korea University, 2511 Sejong-ro, Sejong 339-700, Korea
Abstract:This study compared three different disinfection processes (chlorination, E-beam, and ozone) and the efficacy of three oxidants (H2O2, S2O8-, and peroxymonosulfate (MPS)) in removing antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs) in a synthetic wastewater. More than 30 mg/L of chlorine was needed to remove over 90% of ARB and ARG. For the E-beam method, only 1 dose (kGy) was needed to remove ARB and ARG, and ozone could reduce ARB and ARG by more than 90% even at 3 mg/L ozone concentration. In the ozone process, CT values (concentration × time) were compared for ozone alone and combined with different catalysts based on the 2-log removal of ARB and ARG. Ozone treatment yielded a value of 31 and 33 (mg·min)/L for ARB and ARGs respectively. On the other hand, ozone with persulfate yielded 15.9 and 18.5 (mg·min)/L while ozone with monopersulfate yielded a value of 12 and 14.5 (mg·min)/L. This implies that the addition of these catalysts significantly reduces the contact time to achieve a 2-log removal, thus enhancing the process in terms of its kinetics.
Keywords:antibiotic resistance  ozonation  catalyst  oxidants  disinfection
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