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通过调节碳/钛复合材料性能实现染料的深度去除

Advanced Removal of Dyes with Tuning Carbon/TiO Composite Properties.

作者信息

Yankovych Halyna Bodnar, Abreu-Jaureguí Coset, Farrando-Perez Judit, Melnyk Inna, Václavíková Miroslava, Silvestre-Albero Joaquín

机构信息

Institute of Geotechnics, Slovak Academy of Sciences, Watsonova 45, 04001 Košice, Slovakia.

Laboratorio de Materiales Avanzados, Departamento de Química Inorgánica-Instituto Universitario de Materiales, Universidad de Alicante, E-03690 San Vicente del Raspeig, Spain.

出版信息

Nanomaterials (Basel). 2024 Feb 3;14(3):309. doi: 10.3390/nano14030309.

Abstract

This study evaluates the removal of several dyes with different charge properties, i.e., anionic (Acid Red 88), cationic (Basic Red 13), and neutral (Basic Red 5) using transition metal-doped TiO supported on a high-surface-area activated carbon. Experimental results confirm the successful deposition of TiO and the derivatives (Zr-, Cu-, and Ce-doped samples) on the surface of the activated carbon material and the development of extended heterojunctions with improved electronic properties. Incorporating a small percentage of dopants significantly improves the adsorption properties of the composites towards the three dyes evaluated, preferentially for sample AC/TiO_Zr. Similarly, the photodegradation efficiency highly depends on the nature of the composite evaluated and the characteristics of the dye. Sample AC/TiO_Zr demonstrates the best overall removal efficiency for Acid Red 88 and Basic Red 5-83% and 63%, respectively. This promising performance must simultaneously be attributed to a dual mechanism, i.e., adsorption and photodegradation. Notably, the AC/TiO_Ce outperformed the other catalysts in eliminating Basic Red 13 (74%/6 h). A possible Acid Red 88 degradation mechanism using AC/TiO_Zr was proposed. This study shows that the removal efficiency of AC/TiO composites strongly depends on both the material and pollutant.

摘要

本研究评估了使用负载在高比表面积活性炭上的过渡金属掺杂TiO,去除几种具有不同电荷性质的染料,即阴离子型(酸性红88)、阳离子型(碱性红13)和中性型(碱性红5)。实验结果证实了TiO及其衍生物(Zr掺杂、Cu掺杂和Ce掺杂样品)成功沉积在活性炭材料表面,并形成了具有改善电子性质的扩展异质结。掺入少量掺杂剂显著提高了复合材料对所评估的三种染料的吸附性能,对于样品AC/TiO_Zr尤为明显。同样,光降解效率高度依赖于所评估复合材料的性质和染料的特性。样品AC/TiO_Zr对酸性红88和碱性红5分别表现出最佳的总体去除效率,分别为83%和63%。这种有前景的性能必须同时归因于吸附和光降解这两种机制。值得注意的是,AC/TiO_Ce在去除碱性红13方面(6小时内去除率74%)优于其他催化剂。提出了使用AC/TiO_Zr降解酸性红88的可能机制。本研究表明,AC/TiO复合材料的去除效率强烈依赖于材料和污染物两者。

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