研究目的
To examine an energy-efficient treatment driven by a UV-LED/chlorine reaction with UV-LED chip emitting UV275 nm to remove ciprofloxacin and ciprofloxacin-resistant bacteria in water.
研究成果
The UV-LED/chlorine process effectively degraded ciprofloxacin and inactivated ciprofloxacin-resistant bacteria with significantly lower energy consumption compared to other AOPs. The process showed the best efficiency at alkaline pH and was capable of complete detoxification of hospital wastewater.
研究不足
The study did not investigate the removal of antibiotic resistance genes (ARG) and mobile genetic elements (MGEs), which are important for understanding the complete inactivation of antibiotic resistance. Additionally, the Microtox acute toxicity test of HWW could not be performed due to high turbidity.
1:Experimental Design and Method Selection
The study compared the degradation kinetics of CIP during chlorination, UV-LED photolysis, UV-LED/H2O2, and UV-LED/chlorine reactions. The effects of free available chlorine (FAC) dosage and pH on the removal kinetics of CIP during the UV-LED/chlorination reaction were examined.
2:Sample Selection and Data Sources
CIP (C17H18FN3O3) and other chemicals were purchased from Sigma-Aldrich. Hospital wastewater (HWW) was obtained from Ehwa Womans University Medical Center.
3:List of Experimental Equipment and Materials
UV-LED lamp from Lichtzen, HPLC-UV/VIS detector (UltiMate? 3000, Dionex), UPLC-QTOF-MS (ACQUITY UPLC system, Synapt G2-S MS, Waters), GC-QTOF-MS (7890B, 7250 MS, Agilent), ion chromatography (Dionex? Aquion? IC System, Thermo Fisher Scientific), TOC analyzer (TOC 5000, Shimadzu).
4:Experimental Procedures and Operational Workflow
Experiments were performed in a glass reactor with a magnetic stirrer. The pH of the solution was adjusted using 1 M NaOH or H2SO4. The residual FAC was quenched with Na2S2O3 solution. For toxicity assessment, Microtox? toxicity screening method was used.
5:Data Analysis Methods
Data processing was performed using UNIFI software for UPLC-QTOF-MS and Mass Hunter software for GC-QTOF-MS. The acute toxicity was suggested using the relative inhibition ratio (1–Lt/L0).
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