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通过石墨杂化掺入银掺杂的氧化锌纳米棒:降解环丙沙星的有效方法。

Incorporation of Ag-doped ZnO nanorod through Graphite hybridization: Effective approach for degradation of Ciprofloxacin.

作者信息

Roy Tanu Shree, Akter Surya, Fahim Monabbir Rafsan, Gafur Md Abdul, Ferdous Tahmina

机构信息

Department of Physics, Bangladesh University of Textiles, Dhaka, Bangladesh.

Department of Physics, Jahangirnagar University, Savar Union, Bangladesh.

出版信息

Heliyon. 2023 Jan 21;9(2):e13130. doi: 10.1016/j.heliyon.2023.e13130. eCollection 2023 Feb.

Abstract

To remove the Ciprofloxacin (CIP) from aqueous solution, ZnO-Ag-Gp nanocomposite exhibited efficient photocatalytic properties. The biopersistent CIP is pervasive in surface water and also hazardous to human and animal health. This study utilized the hydrothermal technique to prepare Ag-doped ZnO hybridizing Graphite (Gp) sheet (ZnO-Ag-Gp) to degrade pharmaceuticals pollutant CIP from an aqueous medium. The structural and chemical compositions of the photocatalysts were determined by XRD, FTIR and XPS analysis. FESEM and TEM images revealed the nanorod ZnO with round shape Ag distributed on a Gp surface. The reduced bandgap of the ZnO-Ag-Gp sample enhanced the photocatalytic property which was measured by using UV-vis Spectroscopy. Dose optimization study found that 1.2 g/L is optimum for single (ZnO) and binary (ZnO-Gp and ZnO-Ag), where 0.3 g/L ternary (ZnO-Ag-Gp) exhibited maximum degradation efficiency (98%) within 60 min for 5 mg/L CIP. Pseudo 1st order reaction kinetics rate was found highest for ZnO-Ag-Gp (0.05983 min) and it decreased to 0.03428 min for annealed sample. Removal efficiency decreased to only 90.97% at 5th run and hydroxyl radicals played a vital role to degrade CIP from aqueous solution. UV/ZnO-Ag-Gp will be a promising technique to degrade wide-ranging pharmaceutical antibiotics from the aquatic medium.

摘要

为了从水溶液中去除环丙沙星(CIP),ZnO-Ag-Gp纳米复合材料表现出高效的光催化性能。具有生物持久性的CIP广泛存在于地表水中,对人类和动物健康也具有危害。本研究利用水热技术制备了掺杂银的ZnO与石墨(Gp)片层杂化的材料(ZnO-Ag-Gp),以降解水介质中的药物污染物CIP。通过XRD、FTIR和XPS分析确定了光催化剂的结构和化学组成。FESEM和TEM图像显示,纳米棒状的ZnO上分布着圆形的Ag,位于Gp表面。ZnO-Ag-Gp样品减小的带隙增强了光催化性能,这通过紫外-可见光谱进行测定。剂量优化研究发现,对于单一的(ZnO)和二元的(ZnO-Gp和ZnO-Ag)材料,1.2 g/L是最佳剂量,而对于三元的(ZnO-Ag-Gp)材料,0.3 g/L在60分钟内对5 mg/L的CIP表现出最大降解效率(98%)。发现ZnO-Ag-Gp的伪一级反应动力学速率最高(0.05983 min⁻¹),而退火样品的该速率降至0.03428 min⁻¹。在第5次运行时去除效率仅降至90.97%,并且羟基自由基在从水溶液中降解CIP方面起着至关重要的作用。UV/ZnO-Ag-Gp将是一种从水生介质中降解多种药物抗生素的有前景的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20b1/9950824/570a70d9e22d/gr1.jpg

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