首页> 美国卫生研究院文献>International Journal of Molecular Sciences >TiO2 Immobilized on Manihot Carbon: Optimal Preparation and Evaluation of Its Activity in the Decomposition of Indigo Carmine
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TiO2 Immobilized on Manihot Carbon: Optimal Preparation and Evaluation of Its Activity in the Decomposition of Indigo Carmine

机译:固定在Manihot碳上的TiO2:靛蓝胭脂红分解的最佳制备及其活性评估

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摘要

Applications of carbon-TiO2 materials have attracted attention in nanotechnology due to their synergic effects. We report the immobilization of TiO2 on carbon prepared from residues of the plant Manihot, commercial TiO2 and glycerol. The objective was to obtain a moderate loading of the anatase phase by preserving the carbonaceous external surface and micropores of the composite. Two preparation methods were compared, including mixing dry precursors and immobilization using a glycerol slurry. The evaluation of the micropore blocking was performed using nitrogen adsorption isotherms. The results indicated that it was possible to use Manihot residues and glycerol to prepare an anatase-containing material with a basic surface and a significant SBET value. The activities of the prepared materials were tested in a decomposition assay of indigo carmine. The TiO2/carbon eliminated nearly 100% of the dye under UV irradiation using the optimal conditions found by a Taguchi L4 orthogonal array considering the specific surface, temperature and initial concentration. The reaction was monitored by UV-Vis spectrophotometry and LC-ESI-(Qq)-TOF-MS, enabling the identification of some intermediates. No isatin-5-sulfonic acid was detected after a 60 min photocatalytic reaction, and three sulfonated aromatic amines, including 4-amino-3-hydroxybenzenesulfonic acid, 2-(2-amino-5-sulfophenyl)-2-oxoacetic acid and 2-amino-5-sulfobenzoic acid, were present in the reaction mixture.
机译:碳-TiO 2材料的协同作用已经在纳米技术中引起了人们的关注。我们报告了将TiO2固定在由植物Manihot,商业TiO2和甘油的残留物制备的碳上的固定作用。目的是通过保留复合材料的碳质外表面和微孔来获得适度的锐钛矿相负载。比较了两种制备方法,包括混合干前体和使用甘油浆液固定化。使用氮吸附等温线进行微孔阻塞的评估。结果表明,可以使用Manihot残基和甘油制备具有基本表面和显着的SBET值的含锐钛矿的材料。在靛蓝胭脂红的分解测定中测试了所制备材料的活性。考虑到比表面积,温度和初始浓度,使用Taguchi L4正交阵列找到的最佳条件,TiO2 /碳在紫外线照射下消除了近100%的染料。通过UV-Vis分光光度法和LC-ESI-(Qq)-TOF-MS监测反应,从而能够鉴定一些中间体。 60分钟的光催化反应后未检测到isatin-5-磺酸,并检测了3种磺化的芳族胺,包括4-氨基-3-羟基苯磺酸,2-(2-氨基-5-磺基苯基)-2-氧乙酸和2 -氨基-5-磺基苯甲酸存在于反应混合物中。

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