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Adsorbed species on TiO2 associated with the photocatalytic oxidation of trichloroethylene under UV

Paper ID Volume ID Publish Year Pages File Format Full-Text
28467 44076 2006 9 PDF Available
Title
Adsorbed species on TiO2 associated with the photocatalytic oxidation of trichloroethylene under UV
Abstract

Fourier Transform Infrared (FT-IR) spectroscopy and X-ray photoelectron spectroscopy (XPS) were used to investigate the species adsorbed on TiO2 related to photocatalytic activity. Dichloroacetyl chloride (DCAC), which is generated during the photocatalytic oxidation of trichloroethylene (TCE), was the only species adsorbed on TiO2. Two types of DCAC were adsorbed – one at low concentration and another at high concentration. While adsorbed phosgene produced from DCAC was adsorbed strongly to TiO2, the adsorption of DCAC was relatively weak. The surface structures of the adsorbed DCAC at low and high concentrations on TiO2 were carboxylate compounds on single Ti–O bonds. The surface structures of carboxylate compounds were resolved to those of adsorbed phosgene, bidentate carbonate compounds, on the two Ti–O bonds during photocatalytic oxidation under UV irradiation. The adsorbed DCAC on TiO2 reduces the photooxidation rate of TCE, and the CHCl2 stretching vibration of adsorbed DCAC was considered to be the inactive species. The adsorbed DCAC and dichloroacetic acid (DCAA) were converted to adsorbed phosgene by photocatalytic oxidation on TiO2.

Keywords
Adsorbed species; DCAC; Phosgene; TCE; TiO2; Photocatalyst; Surface
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Adsorbed species on TiO2 associated with the photocatalytic oxidation of trichloroethylene under UV
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Publisher
Database: Elsevier - ScienceDirect
Journal: Journal of Photochemistry and Photobiology A: Chemistry - Volume 184, Issue 3, 15 December 2006, Pages 273–281
Authors
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Subjects
Physical Sciences and Engineering Chemical Engineering Bioengineering
Get Full-Text Now
Don't Miss Today's Special Offer
Price was $35.95
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Price after discount Only $4.95
100% Money Back Guarantee
Full-text PDF Download
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