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A study on the preparation of floating photocatalyst supported by hollow TiO2 and its performance

机译:中空TiO2负载的浮动光催化剂的制备及其性能研究。

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This research used hollow glass microspheres (HGMS) as carrier and polystyrene (PSt) as template. PSt was loaded on HGMS surface through the modification by silane coupler. Next, amorphous titanium dioxide (TiO2) produced through tetrabutyl titanate (TBT) hydrolysis precipitated on PSt surface, forming HGMS/PSt/TiO2 particles. Lastly, using the calcinations method, this research obtained anatase TiO2, eliminated PSt, and ultimately acquired composite particles with hollow TiO2 loaded on HGMS surface (HGMSHT). SEM results presented that hollow TiO2 was compact on HGMS surface and a multilayer network structure was formed. The specific surface area of HGMSHT particles was 26 m(2)/g, which was much larger than that of HGMS/TiO2 (HGMST) composite particles (5.6 m(2)/g) through direct TBT hydrolysis. Results of catalytic degradation experiment with Rhodamine B and phenol under UV light and sunlight demonstrated that due to larger TiO2 load capacity and specific surface area, the catalytic activity of HGMSHT composite particles was significantly more desirable than that of HGMST, and the catalyst presented satisfactory stability. (C) 2014 Elsevier B.V. All rights reserved.
机译:本研究以空心玻璃微球(HGMS)为载体,以聚苯乙烯(PSt)为模板。通过硅烷偶联剂的改性,将PSt负载在HGMS表面上。接下来,通过钛酸四丁酯(TBT)水解产生的无定形二氧化钛(TiO2)沉淀在PSt表面,形成HGMS / PSt / TiO2颗粒。最后,通过煅烧方法,本研究获得了锐钛矿型TiO2,消除了PSt,最终获得了负载在HGMS表面的空心TiO2复合颗粒(HGMSHT)。 SEM结果表明,空心TiO2在HGMS表面致密,并形成多层网络结构。 HGMSHT颗粒的比表面积为26 m(2)/ g,比直接通过TBT水解的HGMS / TiO2(HGMST)复合颗粒的比表面积(5.6 m(2)/ g)大得多。罗丹明B和苯酚在紫外光和阳光下的催化降解实验结果表明,由于较大的TiO2负载能力和比表面积,HGMSHT复合颗粒的催化活性明显优于HGMST,并且催化剂具有令人满意的稳定性。 。 (C)2014 Elsevier B.V.保留所有权利。

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