首页> 外文期刊>Journal of Cleaner Production >A potential natural solar light active photocatalyst using magnetic ZnFe_2O_4 @ TiO_2/Cu nanocomposite as a high performance and recyclable platform for degradation of naproxen from aqueous solution
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A potential natural solar light active photocatalyst using magnetic ZnFe_2O_4 @ TiO_2/Cu nanocomposite as a high performance and recyclable platform for degradation of naproxen from aqueous solution

机译:使用磁性ZnFe_2O_4 @ TiO_2 / Cu纳米复合物作为高性能和可回收平台的潜在天然太阳能光催化剂,用于从水溶液中降解萘普伦的高性能和可回收平台

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In this study, naproxen degradation examined using a photocatalytic method under the sunlight and UV light via ZnFe2O4@TiO2/Cu nanocomposite in the batch, continuous and large scale systems. ZnFe2O4@TiO2/Cu nanocomposite was prepared using Solvothermal method, and structure, morphology, and size of the nanoparticles was determined using XRD, VSM, FESEM/EDX, DLS, FTIR, TGA, UV-Vis (DRS), XPS, PL, ESR, Zeta potential and ICP-OES. pH, catalyst concentration, aeration, initial concentration of naproxen, flow rate was investigated on naproxen photodegradation. The results showed that ZnFe2O4@TiO2/Cu nanocomposites exhibited better photocatalytic activity in relation to ZnFe2O4@TiO2 and ZnFe2O4. The ZnFe2O4@TiO2/Cu nanocomposite exhibited naproxen photodegradition efficiency of 80.73% under sunlight. It also revealed high stability and recyclability, where in after 5 cycles of using the catalyst in take, 72.31% removal was achieved. With increasing flow rates i.e. from 5 to 15 ml/min, naproxen degradation decreased. Therefore, it can be safely concluded that ZnFe2O4@TiO2/Cu nanoparticle, due to high efficiency as well as easy separation of nanoparticles from pollutants via a magnet can be used as a practical, reliable, efficient and inexpensive way to remove contaminants from the water resources. (c) 2020 Elsevier Ltd. All rights reserved.
机译:在该研究中,在批量,连续和大规模系统中通过阳光和UV光下的光催化方法检查萘甲酸的降解。使用XRD,VSM,FESEM / EDX,DLS,FTIR,TGA,UV-Vis(DRS),XPS,PL,使用XRD,VSM,FESEM / EDX,DLS,FTIR,TGA,UV-Vis(DRS),XPS,PL,XPS2 / Cu纳米复合材料制备纳米粒子的结构,形态和尺寸, ESR,Zeta潜力和ICP-OES。对萘普生光降解研究了pH,催化剂浓度,曝气,初始浓度,研究了流速。结果表明,ZnFe2O4 @ TiO 2 / Cu纳米复合材料与ZnFe2O4 @ TiO2和ZnFe2O4有关的更好的光催化活性。 ZnFe2O4 @ TiO 2 / Cu纳米复合材料在阳光下表现出80.73%的萘普生光降解效率。它还揭示了高稳定性和可回收性,其中在使用催化剂的5次循环之后,实现了72.31%的去除。随着流速的增加,即5至15毫升/分钟,萘普生降解降低。因此,可以安全地结论,ZnFe2O4 @ TiO2 / Cu纳米颗粒,由于高效率以及通过磁体的污染物纳米颗粒容易分离,可以用作从水中去除污染物的实用,可靠,有效且廉价的方式资源。 (c)2020 elestvier有限公司保留所有权利。

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