TY - JOUR T1 - Removal of pharmaceutically active compounds from hospital wastewater by ozonation pretreatment AU - Ateş, Havva AU - Mansımlı, Mahammad PY - 2025 DA - September Y2 - 2024 DO - 10.35208/ert.1511061 JF - Environmental Research and Technology JO - ERT PB - Mehmet Sinan Bilgili WT - DergiPark SN - 2636-8498 SP - 571 EP - 580 VL - 8 IS - 3 LA - en AB - Hospital wastewater includes many pharmaceutically active compounds (PhACs). Since this resulted in both PhACs distribution to the environment and development of antibiotic resistance in microorganisms, on-site treatment of hospital wastewater has gained importance. In this study, the removal of 21 PhACs consisting of 12 parent compounds and 9 main metabolites from hospital wastewater by ozonation was investigated. In this context, commonly used analgesics (Paracetamol, Diclofenac, Ibuprofen, and Naproxen, 4'-Hydroxydiclofenac, 5-Hydroxydiclofenac, 1-Hydroxyibuprofen, 2-Hydroxyibuprofen, Carboxyibuprofen, (S)-O-Desmethyl naproxen) and antibiotics (Ciprofloxacin, Sulfamethoxazole, Trimethoprim, Erythromycin, Metronidazole, Clarithromycin, Azithromycin, Clindamycin, N-Acetyl-Sulfamethoxazole, Sulfamethoxazole-β-D-Glucuronide, Clindamycin sulfoxide) were selected. PhAC analyses were performed by HPLC/MS-MS. The ozonation dose was between 0.05-5.0 mg O3/mg COD. In real hospital wastewater, many of the selected PhACs were detected and total analgesic and antibiotic were determined as 22.9 and 40.6 µg/L, respectively. The results showed that detected PhACs were completely removed at 1.5 mg O3/mg COD. Sulfamethoxazole was degraded at the lowest dose of ozone (0.05mg O3/mg COD), while Ciprofloxacin and 2-Hydroxy ibuprofen were relatively resistant to non-stoichiometric doses of ozone. The removal efficiencies of Ciprofloxacin and 2-Hydroxy ibuprofen were determined as 77% and 37%, respectively, at 0.5 mg O3/mg COD. Additionally, COD removal was 48% at 1.5 mg O3/mg COD. As a result, pre-oxidation of hospital wastewater can be an effective method for on-site pretreatment of PhACs. KW - Hospital wastewater KW - ozonation KW - antibiotics KW - analgesics CR - S. Hocaoglu, Celebi, M., Basturk, M. D. and R. Partal, “Treatment-based hospital wastewater characterization and fractionation of pollutants,” Journal of Water Process Engineering, Vol. 43, pp. 102205, 2012. CR - A. Majumder, A. K. Gupta, P. S., Ghosal, and M. Varma, “A review on hospital wastewater treatment: A special emphasis on occurrence and removal of pharmaceutically active compounds, resistant microorganisms, and SARS-CoV-2,” Journal of environmental chemical engineering, Vol. 9(2), pp. 10481, 2021. CR - L. Lien, N. Hoa, N. Chuc, N. Thoa, H. Phuc, V. Diwan, N. Dat, A. Tamhankar, C. 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