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通过在分级多孔碳上负载 TiO2 纳米粒子形成异质结,同时结合吸附和光催化过程,实现了高效偶氮染料的去除。

High efficiency azo dye removal via a combination of adsorption and photocatalytic processes using heterojunction Titanium dioxide nanoparticles on hierarchical porous carbon.

机构信息

Department of Industrial Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand; Graduate School, Chiang Mai University, Chiang Mai, 50200, Thailand.

National Metal and Materials Technology Center, National Science and Technology Development Agency, Pathum Thani, 12120, Thailand.

出版信息

Environ Res. 2024 Nov 1;260:119627. doi: 10.1016/j.envres.2024.119627. Epub 2024 Jul 15.

DOI:10.1016/j.envres.2024.119627
PMID:39019139
Abstract

Amidst the rapid development of the textile industry, wastewater problems also arise. High-performance materials for reactive black 5 (RB5) dye treatment by adsorption and photocatalysis were evolved using Titanium dioxide (TiO) nanoparticles on carbon media. Herein, the synthesis of spherical carbon via the water-in-oil emulsion method alongside a sol-gel process and the production of TiO nanoparticles using the precipitation procedure of Titanium isopropoxide and carbonization at 700-900 °C for 2 h are a novel approach in this work. The characterization of these materials indicates that different temperatures result in distinct properties, for instance, raised pores on the surface of the media and changes in the crystal structure of TiO. The results show that the as-synthesized material carbonized at 900 °C had distinguished dye adsorption, up to 430 ppm in 1 h, due to their high surface area and pore volume. On the contrary, the calcined 700 °C condition had the prominent photocatalytic efficiency on account of the heterojunction band gap between anatase and rutile crystal structure. A mixed phase minimizes the charge recombination, subsequently increasing the photocatalytic capability.

摘要

在纺织业快速发展的同时,废水问题也随之产生。本研究采用 TiO 纳米粒子在碳载体上的吸附和光催化作用,开发出用于处理活性黑 5(RB5)染料的高性能材料。在此,通过水包油乳液法和溶胶-凝胶法合成了球形碳,并通过钛异丙醇盐的沉淀法和 700-900°C 下碳化 2 小时制备了 TiO 纳米粒子。这些材料的特性表明,不同的温度会产生不同的性质,例如,介质表面的孔升高和 TiO 晶体结构的变化。结果表明,在 900°C 下合成的碳化材料由于具有较高的比表面积和孔体积,在 1 小时内可达到 430ppm 的出色染料吸附性能。相反,煅烧温度为 700°C 的条件下,由于锐钛矿和金红石晶体结构之间的异质结能带隙,具有突出的光催化效率。混合相可以最小化电荷复合,从而提高光催化性能。

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