Photocatalytic Removal of Metronidazole Antibiotics from Water Using Novel Ag-N-SnO2 Nanohybrid Material

被引:4
|
作者
Shuvo, Md. Shahriar Hossain [1 ]
Putul, Rupna Akther [1 ]
Hossain, Khandker Saadat [2 ]
Masum, Shah Md. [1 ]
Molla, Md. Ashraful Islam [1 ]
机构
[1] Univ Dhaka, Fac Engn & Technol, Dept Appl Chem & Chem Engn, Dhaka 1000, Bangladesh
[2] Univ Dhaka, Fac Sci, Dept Phys, Nanophys & Soft Matter Lab, Dhaka 1000, Bangladesh
关键词
photocatalytic degradation; metronidazole; Ag-N-SnO2; sunlight; nanohybrid material; AG-SNO2 QUANTUM DOTS; SOL-GEL; DEGRADATION; NANOPARTICLES; FABRICATION; PERFORMANCE; KINETICS;
D O I
10.3390/toxics12010036
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this study, we employed a straightforward synthetic approach using the sol-gel method to fabricate a novel photocatalyst, Ag and N co-doped SnO2 (Ag-N-SnO2). The synthesized photocatalysts underwent characterization through various techniques including XRD, FTIR, FESEM-EDS, TEM, UV-vis DRS, BET, and XPS. The UV-vis DRS results confirmed a reduction in the bandgap energy of Ag-N-SnO2, leading to enhanced absorption of visible light. Additionally, TEM data demonstrated a smaller particle size for Ag-N-SnO2, and BET analysis revealed a significant increase in surface area compared to SnO2.The efficiency of the Ag-N-SnO2 photocatalyst in degrading metronidazole (MNZ) under natural sunlight surpassed that of SnO2. Under optimal conditions (Ag-N-SnO2 concentration of 0.4 g/L, MNZ concentration of 10 mg/L, pH 9, and 120 min of operation), the highest MNZ photocatalytic removal reached 97.03%. The reaction kinetics followed pseudo-first-order kinetics with a rate constant of 0.026 min(-1). Investigation into the mineralization of MNZ indicated a substantial decrease in total organic carbon (TOC) values, reaching around 56% in 3 h of sunlight exposure. To elucidate the photocatalytic degradation mechanism of MNZ with Ag-N-SnO2, a scavenger test was employed which revealed the dominant role of O-center dot(2)-. The results demonstrated the reusability of Ag-N-SnO2 for up to four cycles, highlighting its cost-effectiveness and environmental friendliness as a photocatalyst.
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页数:19
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