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Copper-supported pillared clay catalysts for the wet hydrogen peroxide catalytic oxidation of model pollutant tyrosol
The catalytic wet hydrogen peroxide oxidation of tyrosol, a major compound of the polyphenolic fraction present in olive oil mill wastewaters, was studied in batch and continuous reactors using copper-supported pillared clay catalysts under mild conditions. The catalysts were prepared by the solid-s...
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Published in: | Applied catalysis. A, General General, 2008-10, Vol.349 (1), p.20-28 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | The catalytic wet hydrogen peroxide oxidation of tyrosol, a major compound of the polyphenolic fraction present in olive oil mill wastewaters, was studied in batch and continuous reactors using copper-supported pillared clay catalysts under mild conditions. The catalysts were prepared by the solid-state reaction of Al-pillared clay synthesized with copper nitrate. The resultant materials were then calcined at 300
°C for 3
h under helium or oxygen. The catalytic activity of Cu-supported pillared clays was found to depend on the calcination method. The effects of several operating conditions were also studied. Our experimental results indicate that, under mild conditions and a stoichiometric amount of oxidant, the calcined material under helium (CuN
He catalyst) showed higher activity and stability (TOC abatement of roughly 80% and total elimination of tyrosol after 1
h reaction, without significant leaching of copper ions) than the calcined material under oxygen (CuN
Oxy). To better understand the catalytic behaviour of copper-supported pillared clay solids, fresh and used catalysts were characterized by X-ray diffraction, nitrogen adsorption, chemical analysis, temperature-programmed reduction (TPR), UV–visible diffuse reflectance spectroscopy, and transmission electron microscopy (TEM).
A new and simple method to prepare Cu-pillared clays is described. These materials are active and stable catalysts, at mild reaction conditions, for catalytic wet hydrogen peroxide oxidation of organic compounds like tyrosol in aqueous solutions. These catalysts result in a promising alternative to the Fenton homogeneous system without significant catalyst leaching and deactivation.
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ISSN: | 0926-860X 1873-3875 |
DOI: | 10.1016/j.apcata.2008.07.021 |