4.7 Article

Interface actions between TiO2 and porous diatomite on the structure and photocatalytic activity of TiO2-diatomite

Journal

APPLIED SURFACE SCIENCE
Volume 303, Issue -, Pages 290-296

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2014.02.169

Keywords

Interface action; Photocatalytic activity; TiO2-diatomite; Phosphoric acid treatment

Funding

  1. National Natural Science Foundation of China [41072025, 51304080]
  2. Open Foundation of Key Laboratory of Automobile Materials (Jilin University, China) Ministry of Education [10-4500603260145]

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TiO2-diatomite photocatalysts were prepared by sol-gel process with various pre-modified diatomite. In order to obtain diatomite with different surface characteristics, two modification approaches including calcination and phosphoric acid treatment on the micro-structure of diatomite are introduced. The photocatalysts were characterized by XRD, XPS, nitrogen adsorption-desorption isotherms and micromorphology analysis. The results indicate that, compared with pure TiO2, the anatase-to-rutile phase transition temperature of TiO2 loaded on diatomite carrier is significantly increased to nearly 900 degrees C, depending on the different pretreatment method of diatomite. The photocatalytic activities of different samples were evaluated by their degradation rate of methyl orange ( MO) dye under UV and visible-light irradiation. The samples prepared by phosphoric acid pretreatment method exhibit the highest photocatalytic activity. After 90 min of UV irradiation, about 90% of MO is decomposed by the best effective photocatalyst. And after 8 h visible-light irradiation, nearly 60% of MO is decomposed by the same sample. Further mechanism investigation reveals that the H3PO4 pretreatment process can obviously change the surface features of diatomite carrier, cause the formation of Si-O-Ti bond, increase the binding strength between TiO2 and diatomite, restrain crystal growth of loaded TiO2, and thus form thermal-stable meso-porous structure at the granular spaces. It helps to build micro-, meso- and macro-porous hierarchical porous structure in TiO2-diatomite, and improves the charge and mass transfer efficiency during catalyzing process, resulting in the significantly increased photocatalytic activity of TiO2-diatomite pretreated by phosphoric acid. (C) 2014 Elsevier B. V. All rights reserved.

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