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采用 CNT/TiO 催化剂在可见发光二极管光反应器中去除水中的新兴污染物二丁基羟基甲苯。

Removal of emerging pollutant dibutylhydroxytoluene from water with CNT/TiO catalysts in a visible LED photoreactor.

机构信息

Department of Chemical Engineering, Faculty of Environmental Sciences and Biochemistry, University of Castilla-La Mancha, Avda. Carlos III, s/n, 45071, Toledo, Spain.

出版信息

Environ Sci Pollut Res Int. 2021 May;28(19):23720-23730. doi: 10.1007/s11356-020-11126-y. Epub 2020 Oct 20.

DOI:10.1007/s11356-020-11126-y
PMID:33078360
Abstract

For the photocatalytic degradation of antioxidant 2,6-di-tert-butyl-hydroxytoluene (BHT), several TiO-based composites have been prepared in MWCNT from titanium isopropoxide and ethanol via supercritical CO synthesis followed by calcination at 400 °C. TEM and XRD showed uniform coverage of CNT by 10 nm TiO particles in the anatase form, and spectral analyses revealed the formation of CNT/TiO structure. Further, synthesized material displayed significant visible light absorption and absorption edge shifted to longer wavelengths. Once the material was characterized, the effect of adsorption and photochemical degradation of BHT was investigated in the wavelength range from 400 to 700 nm, in batch mode, by monitoring the concentrations of BHT as a function of time. CNT/TiO composites were more efficient than commercial TiO P25 in the photodegradation of the antioxidant. In particular, CNT/TiO, a composite with 50% by weight of CNT, was the best catalyst, stable, and completely degrading BHT within 30 min of exposure to visible light. The role played by different reactive oxidative species (h, OH , O, and [Formula: see text]) in the photocatalytic reaction was also studied by using appropriate radical scavengers that inhibited the corresponding active species. Superoxide radical was found the main oxidizing agent.

摘要

为了光催化降解抗氧化剂 2,6-二叔丁基对甲酚(BHT),通过超临界 CO2 合成,以钛异丙醇和乙醇为原料,在 MWCNT 上制备了几种 TiO 基复合材料,然后在 400°C 下煅烧。TEM 和 XRD 表明 CNT 被 10nm TiO 颗粒以锐钛矿形式均匀覆盖,光谱分析表明形成了 CNT/TiO 结构。此外,所合成的材料显示出显著的可见光吸收,吸收边缘移至较长的波长。一旦对材料进行了表征,就通过监测 BHT 的浓度随时间的变化,在批处理模式下,在 400nm 至 700nm 的波长范围内,研究了 BHT 的吸附和光化学降解效果。CNT/TiO 复合材料在抗氧化剂的光降解方面比商业 TiO P25 更有效。特别是,CNT/TiO(含有 50wt% CNT 的复合材料)是最好的催化剂,在可见光照射 30 分钟内稳定且完全降解 BHT。通过使用适当的自由基清除剂抑制相应的活性物质,还研究了不同活性氧化物质(h、OH·、O2·和[Formula: see text])在光催化反应中的作用。超氧自由基被发现是主要的氧化剂。

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