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使用CuFeO/SiO/ZnO纳米复合材料对甲硝唑在水介质中进行光催化臭氧化净化的统计计算优化方法。

Statistical computational optimization approach for photocatalytic-ozonation decontamination of metronidazole in aqueous media using CuFeO/SiO/ZnO nanocomposite.

作者信息

Moslehi Mohammad Hadi, Zadeh Mohammad Shohani, Nateq Kasra, Shahamat Yousef Dadban, Khan Nadeem Ahmad, Nasseh Negin

机构信息

Department of Mathematics, Payame Noor University, Tehran, Iran.

Department of Safety, Health and Environmental Engineering, Abadan Faculty of Petroleum Engineering, Petroleum University of Technology, Abadan, Iran.

出版信息

Environ Res. 2024 Feb 1;242:117747. doi: 10.1016/j.envres.2023.117747. Epub 2023 Nov 26.

Abstract

The increasing use of pharmaceuticals and the ongoing release of drug residues into the environment have resulted in significant threats to environmental sustainability and water safety. In this sense, developing a robust and easy-recovered magnetic nanocomposite with eminent photocatalytic activity is very imperative for detoxifying pharmaceutical compounds. Herein, a systematic study was conducted to investigate the photocatalytic ozonation for eliminating metronidazole (MET) from aqueous media utilizing the CuFeO/SiO/ZnO heterojunction under simulated sunlight irradiation. The composite material was fabricated by a facile hydrothermal method and diagnosed by multiple advanced analytical techniques. Modelling and optimization of MET decontamination by adopting the central composite design (CCD) revealed that 90 % of MET decontamination can be achieved within 120 min of operating time at the optimized circumstance (photocatalyst dose: 1.17 g/L, MET dose: 33.20 mg/L, ozone concentration: 3.99 mg/min and pH: 8.99). In an attempt to scrutinize the practical application of the CuFeO/SiO/ZnO/xenon/O system, roughly 56.18% TOC and 73% COD were removed under the optimized operational circumstances during 120 min of degradation time. According to the radical quenching experiments, hydroxyl radicals (HO) were the major oxidative species responsible for the elimination of MET. The MET degradation rate maintained at 83% after seven consecutive runs, manifesting the efficiency of CuFeO/SiO/ZnO material in the MET removal. Ultimately, the photocatalytic ozonation mechanism over the CuFeO/SiO/ZnO heterojunction of the fabricated nanocomposites was rationally proposed for MET elimination. In extension, the results drawn in this work indicate that integrating photocatalyst and ozonation processes by the CuFeO/SiO/ZnO material can be applied as an efficient and promising method to eliminate tenacious and non-biodegradable contaminants from aqueous environments.

摘要

药品使用的增加以及药物残留持续释放到环境中,已对环境可持续性和水安全构成重大威胁。从这个意义上讲,开发一种具有出色光催化活性且易于回收的磁性纳米复合材料对于药物化合物的解毒至关重要。在此,进行了一项系统研究,以研究在模拟阳光照射下利用CuFeO/SiO/ZnO异质结从水性介质中消除甲硝唑(MET)的光催化臭氧化过程。该复合材料通过简便的水热法制备,并通过多种先进分析技术进行表征。采用中心复合设计(CCD)对MET去污进行建模和优化表明,在优化条件下(光催化剂剂量:1.17 g/L,MET剂量:33.20 mg/L,臭氧浓度:3.99 mg/min,pH:8.99),运行120分钟内可实现90%的MET去污率。为了考察CuFeO/SiO/ZnO/氙气/O系统的实际应用,在120分钟的降解时间内,在优化操作条件下,大约去除了56.18%的总有机碳(TOC)和73%的化学需氧量(COD)。根据自由基猝灭实验,羟基自由基(HO)是负责消除MET的主要氧化物种。连续七次运行后,MET降解率保持在83%,表明CuFeO/SiO/ZnO材料在去除MET方面的效率。最终,合理提出了所制备纳米复合材料在CuFeO/SiO/ZnO异质结上的光催化臭氧化机理以消除MET。此外,这项工作得出的结果表明,通过CuFeO/SiO/ZnO材料整合光催化剂和臭氧化过程可作为一种有效且有前景的方法,用于从水环境中消除顽固且不可生物降解的污染物。

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