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TiO2Nanocatalysts Supported on a Hybrid Carbon-Covered Alumina Support: Comparison between Visible Light and UV Light Degradation of Rhodamine B

机译:TiO2Nanocatalysts支持杂交碳覆盖的氧化铝支持:罗丹明B的可见光和紫外光降解之间的比较

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摘要

Titania nanoparticles were successfully supported on carbon-covered alumina (CCA) supports via the impregnation method to form carbon-covered alumna titania (CCA/TiO2). The CCA supports were synthesised through an equilibrium adsorption of toluene 2,4-diisocyante where the N=C=O irreversibly adsorbs on the alumina and pyrolysis at 700°C affords CCA supports. These CCA/TiO2 nanocatalysts were tested for their photocatalytic activity both under UV and visible light using Rhodamine B as a model pollutant. The reaction rate constant of the CCA/TiO2 was found to be higher than that of unsupported titania and the reaction kinetics were found to follow an apparent first-order rate law. The CCA/TiO2 nanocatalysts had a much larger surface area than the unsupported titania and they exhibited overall higher photodegradation efficiency under both UV and visible light than unsupported TiO2.
机译:在碳覆盖的氧化铝(CCA)上成功地支持二氧化钛纳米颗粒,通过浸渍方法形成碳覆盖的综合氧化钛(CCA / TiO 2)。 CCA载体通过甲苯2,4-二异细胞的平衡吸附合成,其中N = C = O不可逆地吸附在氧化铝上,700℃的热解提供CCA载体。将这些CCA / TiO2纳米催化剂在使用罗丹明B作为模型污染物的UV和可见光下进行光催化活性。发现CCA / TiO2的反应速率常数高于不支持的二氧化钛,并发现反应动力学遵循表观一阶率法。 CCA / TiO2纳米催化剂的表面积比不支持的二氧化钛具有更大的表面积,并且它们在UV和可见光下表现出比不支持的TiO2的光降解效率更高。

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