Advanced Cu-MXene composite catalyst for photocatalytic antibiotic removal in wastewater
Mohammad Sadegh Jafari Zadegan1, Milad Mohammadi1, Samaneh Ghaedi2
1Department of Nano-Chemical Engineering, Faculty of Advanced Technologies, Shiraz University, Shiraz, Iran.
Abstract:
Antibiotic contamination in wastewaters poses severe risks to public health and ecosystems. However, remediation using common treatment methods is inefficient, necessitating the development of advanced remediation strategies. This study introduces a novel Cu-Cu2O-rGO/Ti3C2 MXene (CGTM) nanocomposite photocatalyst, designed for the efficient degradation of tetracycline (TC), a representative antibiotic commonly found in wastewater, under visible light irradiation. The synergistic integration of Cu2O and MXene developed charge separation, suppressed electron-hole recombination, and enhanced photocatalytic efficiency. The CGTM photocatalyst was synthesised via a sonochemical approach and characterised systematically using XRD, SEM, EDS, TGA, FTIR, BET, and zeta potential analyses. Optimisation via Response Surface Methodology (RSM) and Central Composite Design (CCD) achieved a noteworthy TC degradation efficiency of 95 % under optimal conditions, viz. 0.47 g/L catalyst dosage, 48 ppm TC concentration, 50 min irradiation, and pH 5.15. The photocatalyst retained 85 % efficiency after five cycles, confirming material stability and reusability. Mechanistic investigations identified hydroxyl radicals and holes as primary reactive species, with kinetic modelling demonstrating first-order degradation behaviour, confirming effective radical-driven photocatalysis. Practical assessments showed high performance at reduced catalyst dosages, enhancing economic feasibility. These findings confirm the formulated CGTM as a scalable, eco-friendly solution for mitigating antibiotic pollution in wastewater, addressing global environmental challenges.
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