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多孔 AgVO/KIT-6 复合材料的制备、表征及其对刚果红降解的光催化性能增强。

Porous AgVO/KIT-6 composite: Synthesis, characterization and enhanced photocatalytic performance for degradation of Congo Red.

机构信息

Department of Chemistry, COMSATS University Islamabad, Lahore Campus, Defence Road, Off Raiwind Road, Lahore, 54000, Pakistan.

Catalysis and Reaction Engineering Research Group, Department of Chemical Engineering, COMSATS University Islamabad, Lahore Campus, Defence Road, Off Raiwind Road, Lahore, 54000, Pakistan; Refinery Division, Pak-Arab Refinery Limited "Company" (PARCO), Corporate Headquarters, Korangi Creek Road, Karachi, Pakistan.

出版信息

Chemosphere. 2023 Jan;311(Pt 2):137180. doi: 10.1016/j.chemosphere.2022.137180. Epub 2022 Nov 8.

Abstract

Novel AgVO/KIT-6 nanocomposite photocatalyst has been successfully fabricated by a newly-designed simple hard-template induction process, in which the particles of AgVO were grown on the KIT-6 surface and inside the porous framework of the silica matrix. The developed porous framework nanocomposite was characterized by several techniques including N-Physiosorption analysis. The obtained nanocomposite revealed a high surface area (273.86 m/g) along with the possession of monoclinic AgVO, which is highly responsive to visible light (with distinct intensity at about 700 nm). The UV-Vis DRS reveals that the AgVO/KIT-6 photocatalyst bears a bandgap of 2.29 eV which confirms that the material has a good visible light response. The synthesized nanocomposite was tested for its superior physicochemical properties by evaluating its degradation efficiency for Congo Red (CR). The novel composite exhibited superior degradation capability of CR, reaching up to 96.49%, which was around three times the pure AgVO. The detailed kinetic study revealed that the as-prepared material followed a pseudo first order kinetic model for the CR degradation. The study includes a comprehensive parametric study for the formulation of the optimized reaction conditions for photocatalytic reactions. The commercial applicability of the composite material was investigated by a regeneration and recyclability test, which revealed extraordinary results. Furthermore, the possible degradation pathway for CR was also proposed.

摘要

新型 AgVO/KIT-6 纳米复合材料通过一种新设计的简单硬模板诱导工艺成功制备,其中 AgVO 颗粒在 KIT-6 表面和硅基质的多孔骨架内部生长。开发的多孔骨架纳米复合材料通过多种技术进行了表征,包括 N-物理吸附分析。所得纳米复合材料具有高表面积(273.86 m/g),同时具有单斜 AgVO,对可见光具有高度响应(在约 700 nm 处具有明显强度)。UV-Vis DRS 表明,AgVO/KIT-6 光催化剂具有 2.29 eV 的带隙,这证实了该材料具有良好的可见光响应。通过评估其对刚果红(CR)的降解效率,对合成的纳米复合材料进行了优越的物理化学性质测试。新型复合材料对 CR 表现出优异的降解能力,达到 96.49%,约为纯 AgVO 的三倍。详细的动力学研究表明,所制备的材料遵循 CR 降解的拟一级动力学模型。该研究包括对光催化反应优化反应条件的配方进行全面的参数研究。通过再生和可回收性测试研究了复合材料的商业适用性,结果非常出色。此外,还提出了 CR 的可能降解途径。

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