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Fabrication of Zeolite-Loaded TiO2-CdS Composite Semiconductor for Photocatalytic Production of H2
Author: FengYingWu
Tutor: JiangZhaoHua
School: Harbin Institute of Technology
Course: Chemical Engineering and Technology
Keywords: supported photocatalyst TiO2-CdS composite production of H2 photocatalysis
CLC: O614.411
Type: Master's thesis
Year: 2010
Downloads: 51
Quote: 0
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Abstract
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The photocatalytic production of H2 is a combinative technology of environmental treatment and cyclic utilization of resource. The key technology mainly focuses on the development of catalysts with strong visible light response, high photo-catalytic efficiency and the long lifetime.In view of the disadvantages of easy condensation, low quantum yield, low utilization of light in TiO2 power, and easy photo-corrosion in bulk CdS , We used sol-gel method to prepare zeolite loaded TiO2 photocatalyst, prepare zeolite-loaded CdS by ion exchange and precipitation method, and combining these two methods to prepare zeolite loaded TiO2-CdS photocatalyst. The effects of the preparation conditions, such as calcination temperature, ratio of sol and zeolite and exchange times were investigated. The structure and physicochemical properties were characterized by UV-Vis diffuse reflection spectra, XRD, FT-IR, ICP-AES and SEM-EDS. The performance of photocatalytic production of H2 over the above photocatalysts under high pressure mercury lamp and xenon lamp were also studied.It was known from the characteristic results that zeolite loaded TiO2 was better when calcined at 400℃, the ratio zeolite and sol was 1g zeolite / 5ml sol, in which TiO2 was anatase, and the introduction of TiO2 changed the surface morphology of zeolite. In the zeolite loaded CdS system, CdS was hexagonal structure, a blue shift of the adsorption edge in UV-Vis diffuse reflection spectra by quantum size effect, and exchange times was two best. A red shift of the adsorption edge in UV-Vis diffuse reflection spectra of zeolite loaded TiO2-CdS, in which emerged a new peak corresponding to CdS. TiO2 was anatase and rutile crystal co-exist, and CdS have not crystaled, but rather dispersed in zeolite pore or scattered on the sample surface.The zeolite loaded CdS photocatalyst could prevent electron-hole from recombination and enhance the efficiency of H2 evolution, so it could improve the stability of photocatalyst. After CdS loaded on the zeolite/TiO2, hydrogen output has been enhanced largely, indicating TiO2 and CdS composited together, which could complement each other, and increase the hole-electron separation efficiency. The amount of hydrogen under high pressure mercury lamp reached 2000μmol/g、2300μmol/g and 2200μmol/g over zeolite loaded TiO2、zeolite loaded CdS and zeolite loaded TiO2-CdS, and the amount of hydrogen under xenon lamp eached 700μmol/g、900μmol/g、and 850μmol/g over zeolite loaded TiO2、zeolite loaded CdS and zeolite loaded TiO2-CdS.
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CLC: > Mathematical sciences and chemical > Chemistry > Inorganic Chemistry > Metal elements and their compounds > Section Ⅳ group metal elements and their compounds > The titanium Vice family ( IV B group metal elements) > Ti Ti
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