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TiO2 hollow microspheres: synthesis, photocatalytic activity, and selectivity for a mixture of organic dyes

机译:TiO2中空微球:合成,光催化活性和对有机染料混合物的选择性

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The photocatalytic properties of TiO2 have been extensively studied. TiO2 hollow microspheres may be useful for removing organic pollutants from waste water, given their high photocatalytic activities and ease of reclamation. In the work described here, TiO2 hollow microspheres were synthesized by a facile solvothermal method and characterized by XRD, SEM, TEM, and N2 adsorption-desorption isotherm measurements. Their optical properties were investigated using UV-Vis diffuse reflectance absorption spectroscopy. The photocatalytic activity of the as-prepared TiO2 hollow microspheres was evaluated by studying the microsphere-catalyzed photo-degradation of an aqueous rhodamine B solution irradiated with simulated sunlight, and comparing the results with those obtained using commercial TiO2 (P25) as the catalyst instead. The selectivity of the catalytic microspheres was studied by applying them in the photodegradation of a mixed dye solution of rhodamine B and 4-(p-nitrophenylazo)res-orcinol (Magneson I). The TiO2 hollow microspheres were found to exhibit enhanced photocatalytic activity compared to that of P25, and a much higher photodegradation percentage for rhodamine B than for Magneson I in the mixed solution. Interestingly, the photodegradation percentages of the TiO2 hollow microspheres for rhodamine B and Magneson I in the mixed solution were the same as those observed in a solution of rhodamine B and a solution of Magneson I. That is, the TiO2 microspheres degraded the two dyes simultaneously in the mixed solution with the same high efficiency as they did in separate solutions of each dye. This characteristic would be very useful in practical applications. Moreover, the TiO2 hollow microspheres rapidly settled under gravity and were therefore easy to reclaim. These results suggest that the microspheres represent a promising photocatalyst for use in waste water treatment.
机译:TiO 2的光催化性能已被广泛研究。 TiO2中空微球由于其高的光催化活性和易于回收的作用,可能用于去除废水中的有机污染物。在本文所述的工作中,通过简便的溶剂热法合成了TiO2中空微球,并通过XRD,SEM,TEM和N2吸附-脱附等温线进行了表征。使用紫外-可见漫反射吸收光谱法研究了它们的光学性质。通过研究用模拟阳光照射的若丹明B水溶液的微球催化光降解,并将结果与​​使用市售TiO2(P25)代替的结果进行比较,来评估所制备的TiO2中空微球的光催化活性。 。通过将催化微球用于罗丹明B和4-(对硝基苯基偶氮)res-orcinol(Magneson I)的混合染料溶液的光降解中,研究了催化微球的选择性。与P25相比,发现TiO2中空微球显示出增强的光催化活性,在混合溶液中,若丹明B的光降解百分率比Magneson I高得多。有趣的是,混合溶液中若丹明B和Magneson I的TiO2中空微球的光降解百分率与若丹明B和Magneson I溶液中观察到的百分率相同。也就是说,TiO2微球同时降解了两种染料。在混合溶液中的效率与在每种染料的单独溶液中相同。该特性在实际应用中将非常有用。而且,TiO 2空心微球在重力作用下快速沉降,因此易于回收。这些结果表明,微球代表了用于废水处理的有前途的光催化剂。

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