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在废水处理的光催化性能方面,通过溶剂萃取对镍钒氧化物进行循环运行中的 MB 进行再生研究。

Regeneration study of MB in recycling runs over nickel vanadium oxide by solvent extraction for photocatalytic performance for wastewater treatments.

机构信息

Department of Physics, Sacred Heart College (Autonomous), Tirupattur, 635601, Tamil Nadu, India.

Department of Physics, Sacred Heart College (Autonomous), Tirupattur, 635601, Tamil Nadu, India.

出版信息

Environ Res. 2022 Aug;211:112970. doi: 10.1016/j.envres.2022.112970. Epub 2022 Feb 24.

Abstract

Recently, researchers are concentrating on the synthesis of composite materials to enhance the efficiency of the materials in various applications. In this work, nickel vanadium oxide (NiVO) nanocomposite material is prepared via two methods and the prepared samples have been characterized with basic studies to analyse the effect of preparation method and the reaction time. The XRD studies reveal a polycrystalline growth in both the methods. The broad XRD peaks obtained for samples prepared via hydrothermal method suggests the size reduction and 1D nanostructure formation. The SEM analysis shows the formation of 1D structures in hydrothermal and 3D microsphere structures in solvothermal methods. The possible formation mechanism behind this formation has been discussed in this manuscript. The FTIR peaks in the fingerprint region confirm the formation and vibration of metal-oxygen bonds. The large optical bandgap values obtained from Tauc plot again confirms the formation of nanostructures of the synthesized samples. The photocatalytic activity of nickel vanadium oxide on methylene blue dye under halogen light were performed and, the recyclability of the sample is investigated. It was found from the photocatalytic spectrum that, the samples prepared from both the methods shows a degradation efficiency of more than 80% within 150 min. It was confirmed that the prepared NiVO photocatalyst samples does not lose their degradation ability even after five cycles of repeated usage.

摘要

最近,研究人员专注于复合材料的合成,以提高各种应用中材料的效率。在这项工作中,通过两种方法制备了镍钒氧化物(NiVO)纳米复合材料,并对制备的样品进行了基础研究,以分析制备方法和反应时间的影响。XRD 研究表明两种方法均为多晶生长。水热法制备的样品获得的宽 XRD 峰表明尺寸减小和一维纳米结构的形成。SEM 分析表明水热法形成一维结构,溶剂热法形成三维微球结构。本文讨论了这种形成背后的可能形成机制。指纹区域的 FTIR 峰证实了金属-氧键的形成和振动。从 Tauc 图获得的大光学带隙值再次证实了合成样品的纳米结构的形成。在卤素灯下对亚甲基蓝染料进行了镍钒氧化物的光催化活性研究,并研究了样品的可重复使用性。从光催化光谱中发现,两种方法制备的样品在 150 分钟内的降解效率均超过 80%。证实了即使经过五次重复使用,所制备的 NiVO 光催化剂样品也不会失去其降解能力。

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