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ZnO-ZnTiO 异质结构用于高效光催化降解药物。

ZnO-ZnTiO heterostructure for highly efficient photocatalytic degradation of pharmaceuticals.

机构信息

Sultan Moulay Slimane University of Beni Mellal, Multidisciplinary Research and Innovation Laboratory, FP Khouribga, BP.145, 2500, Khouribga, Morocco.

Laboratory of Process and Environmental Engineering, Higher School of Technology, Hassan II University of Casablanca, Casablanca, Morocco.

出版信息

Environ Sci Pollut Res Int. 2023 Jul;30(34):81403-81416. doi: 10.1007/s11356-022-22791-6. Epub 2022 Aug 31.

Abstract

In this study, ZnO-ZnTiO (ZTM) material was prepared through a novel synthesis method based on a ultrasound-assisted polyol-mediated process followed by calcination at a different temperature. Physical features of the samples were studied by using various analysis techniques including XRD, FT-IR, SEM/EDX, pH, and UV-Vis DRS. Subsequently, the materials were employed as catalysts for the photocatalytic degradation of clofibric acid as a model pharmaceutical contaminant. The photocatalytic performance was evaluated under different conditions of calcination temperature, catalyst dosage, starting concentration, and initial pH of clofibric acid solution. The finding results revealed that hexagonal-tetragonal phases of ZnO-ZnTiO calcined at 600 °C (ZTM-600) with an average crystallite size of 97.8 Å exhibited the best degradation efficiency (99%). The primary bands characteristic of ZnO and ZnTiO were displayed by FT-IR analysis and the UV-visible DRS confirms the larger absorption capacity in UV-visible regions. The photogenerated electrons are the powerful reactive species involved in clofibric acid photodegradation process. This study shows a promising photocatalyst and provides new sight to rational design the facets of photocatalysis process for enhanced photocatalytic performances and effective wastewater treatment.

摘要

在这项研究中,通过一种基于超声辅助多元醇介导工艺的新型合成方法,随后在不同温度下煅烧,制备了 ZnO-ZnTiO(ZTM)材料。使用各种分析技术,包括 XRD、FT-IR、SEM/EDX、pH 和 UV-Vis DRS,研究了样品的物理特性。随后,将这些材料用作光催化降解氯菲酸作为模型药物污染物的催化剂。在不同的煅烧温度、催化剂用量、起始浓度和氯菲酸溶液初始 pH 条件下,评估了光催化性能。结果表明,在 600°C 下煅烧的具有 97.8Å 平均晶粒尺寸的六方-四方相 ZnO-ZnTiO(ZTM-600)表现出最佳的降解效率(99%)。FT-IR 分析显示了 ZnO 和 ZnTiO 的特征主带,UV-Vis DRS 证实了在紫外可见区域具有更大的吸收能力。光生电子是参与氯菲酸光降解过程的强反应性物质。这项研究展示了一种有前途的光催化剂,并为合理设计光催化过程的晶面提供了新的思路,以提高光催化性能和有效处理废水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f17b/9430018/9ebbed9a8664/11356_2022_22791_Fig1_HTML.jpg

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