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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Investigation on degradation of dyestuff wastewater using visible light in the presence of a novel nano TiO2 catalyst doped with upconversion luminescence agent
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Investigation on degradation of dyestuff wastewater using visible light in the presence of a novel nano TiO2 catalyst doped with upconversion luminescence agent

机译:新型上转换发光剂掺杂纳米TiO2催化剂存在下可见光降解染料废水的研究。

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A new upconversion luminescence agent, 40CdF(2)(.)60BaF(2)(.)1.0Er(2)O(3), was synthesized and its fluorescent spectrum was determined. This upconversion luminescence agent can emit five upconversion fluorescent peaks shown in the fluorescent spectrum whose wavelenghts are all below 387 nm under the excitation of 488 nm visible light. This upconversion luminescence agent was mixed into nano rutile TiO2 powder by ultrasonic and boiling dispersion and then a novel doped nano TiO2 photocatalyst utilizing visible light was firstly prepared. The dope nano TiO2 powder was charactered by XRD and TEM and its photocatalytic activity was checked through the photocatalytic degradation reaction of azo fuchsine as a model compound under the visible light irradation emitted by 6 three basic color lamps. Otherwise, in order to compare the photocatalytic activities the same experiment was carried out for undoped TiO2 powder. The degradation ratio of azo fuchsine in the presence of doped nano TiO2 powder reached 95% under visible light irradation within 24 h, which was obviously higher than the corresponding degradation ratio of 21% in the presence of undoped nano rutile TiO2 powder. It indicates that the upconversion luminescence agent prepared as dopant can effectively turn visible lights to ultravoilet lights that are absorbed by nano TiO2 particles to produce the electron-cavity paris. All the results show that the nano rutile TiO2 powder doped with upconversion luminescence agent is a promising photocatalyst using sunlight for treating the industry dye wastewater in great force. (c) 2005 Elsevier B.V. All rights reserved.
机译:合成了一种新的上转换发光剂40CdF(2)(。)60BaF(2)(。)1.0Er(2)O(3),并确定了其荧光光谱。该上转换发光剂在488nm可见光的激发下可以发射荧光光谱中所示的五个上转换荧光峰,它们的波长都在387nm以下。通过超声和​​沸腾分散将该上转换发光剂混入纳米金红石型TiO2粉末中,然后首先制备了一种利用可见光的新型掺杂纳米TiO2光催化剂。用X射线衍射和透射电镜对纳米TiO2粉体进行了表征,在6个三基色灯的可见光照射下,通过偶氮品红作为模型化合物的光催化降解反应,考察了其光催化活性。否则,为了比较光催化活性,对未掺杂的TiO2粉末进行了相同的实验。掺杂纳米TiO2粉体在24 h可见光下偶氮品红的降解率达到95%,明显高于未掺杂纳米金红石粉体中21%的降解率。这表明作为掺杂剂制备的上转换发光剂可以有效地将可见光转变为紫外光,纳米二氧化钛吸收了紫外光,从而产生电子腔巴黎。所有结果表明,掺有上转换发光剂的纳米金红石型TiO2粉末是一种很有前途的光催化剂,利用日光强力处理工业染料废水。 (c)2005 Elsevier B.V.保留所有权利。

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