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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Preparation and characterization of metals supported on nanostructured TiO2 hollow spheres for production of hydrogen via photocatalytic reforming of glycerol
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Preparation and characterization of metals supported on nanostructured TiO2 hollow spheres for production of hydrogen via photocatalytic reforming of glycerol

机译:甘油光催化重整纳米结构TiO2中空球体负载金属的制备及表征

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Nanostructured TiO2 hollow spheres (THS) were prepared via a simple hydrothermal method with titanium butoxide, ethanol, urea, and ammonium sulphate. The effects of Ti/ethanol, and reflux temperature on the morphological properties of the nanostructured THS were investigated. An impregnation method was subsequently employed to load metals such as Cu, Co, Cr, Ag, and Ni on the optimized THS, followed by calcination in H-2/N-2 at 450 degrees C for 4 h. The morphological properties of the prepared samples were characterized by Brunauer-Emmett-Teller (BET), X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and ultraviolet-visible spectroscopy (UV/vis). The SEM and TEM pictures showed that the Ti/ethanol ratio of 1:10 resulted in the formation of uniform hollow spheres. The XRD spectre revealed that phase transformation took place as the reflux temperature was increased, with pure anatase TiO2 hollow spheres being formed at 200 degrees C. The BET surface areas of the calcined photocatalysts were in the range of 80.6-116 m(2)/g(-1). The UV/vis spectra of the photocatalysts showed that loading of transition metals reduced the band gap of the THS. The activities of the prepared catalysts were tested for hydrogen production via photocatalytic reforming of glycerol under solar irradiation. The improved hydrogen evolution from photocatalytic reforming of glycerol was attributed to: the high surface area which enhanced the adsorption of glycerol onto the surface of photo catalysts; high crystallinity and the reduced band gap which improved the solar light harvesting; the hollow chamber within the TiO2 spheres which produced multiple reflection of the light harvested, thus producing efficient electron/hole pair formation; and the detailed composition of the solids retarded the electron/hole recombination by trapping the electrons generated during the photo excitation of the photocatalysts, and thereby promoted their activity.
机译:纳米结构TiO2中空球体(THS)通过具有钛丁基,乙醇,尿素和硫酸铵的简单的水热法制备。研究了Ti /乙醇和回流温度对纳米结构THs的形态学性能的影响。随后使用浸渍方法在优化的TH上负载金属,例如Cu,Co,Cr,Ag和Ni,然后在450℃下煅烧4小时4小时。通过Brunauer-Emmett-exers(Bet),X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和紫外线可见光谱(UV / Vis)的形态学性能)。 SEM和TEM图片显示Ti /乙醇比为1:10导致形成均匀的空心球。 XRD映射显示,随着回流温度升高,纯锐钛矿TiO 2中空球形成在200℃下形成。煅烧光催化剂的BET表面积为80.6-116m(2)/ g(-1)。光催化剂的UV / Vis光谱显示过渡金属的负载降低了TH的带隙。通过在太阳照射下通过光催化重整,通过光催化重整,测试制备的催化剂的活性。从甘油的光催化重整的改善的氢进化归因于:高表面积,其增强甘油吸附到光催化剂表面上;高结晶度和降低的带隙,改善了太阳光收获;在TiO2球内的中空腔室产生多次反射的光收获,从而产生有效的电子/空穴对形成;并且固体的详细组成通过捕获光催化剂的照片激发期间产生的电子而延迟了电子/空穴重组,从而促进了它们的活性。

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