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Автор Bozzi, Anna
Автор Yuranova, Tatiana
Автор Mielczarski, Jerzy
Автор Kiwi, John
Дата выпуска 2004
dc.description The present study reports on the use of novel structured inorganic silica fabrics loaded with Fe ions by exchange-impregnation as a heterogeneous photocatalyst. These Feâ silica fabrics are denoted EGF/Fe(0.4%). Experimental evidence shows that Fe ions are released from the silica fabrics and react with H2O2 to form oxidative radicals in solution; the Fe ions are reduced to Fe(ii) during oxalic acid and oxalate oxidation. The Fe<sup>3+</sup> is extracted from the support to the aqueous medium where it is re-oxidized by being re-adsorbed onto the silica fabric. The contributions of the homogeneous and heterogeneous photocatalysis processes during the degradation of oxalic acid and oxalates were quantified as a function of the solution pH and the results presented agree with the modeling of the iron oxide surface in the presence of oxalates at different pH values. By attenuated total reflection infrared spectroscopy (ATRIR), the asymmetric stretching vibration doublet band at 1740 cm<sup>â 1</sup> and the satellite peaks corresponding to surface carboxylates were followed during the photocatalytic destruction of the oxalates. The results obtained indicate that the oxalate decomposition channel involves a fast light-activated decarboxylation of the Fe complex: [RCO2Fe]<sup>2+</sup>â â â [R.rad;]â +â CO2â +â Fe<sup>2+</sup>. The structural features of the EGF/Fe(0.4%) surfaces were investigated before and after the oxalate photocatalysis by high resolution transmission electron microscopy (HRTEM), X-ray photoelectron spectroscopy (XPS) and gas adsorption studies (BET).
Формат application.pdf
Издатель Royal Society of Chemistry
Название Evidence for immobilized photo-Fenton degradation of organic compounds on structured silica surfaces involving Fe recycling
Тип research-article
DOI 10.1039/b316027k
Electronic ISSN 1369-9261
Print ISSN 1144-0546
Журнал New Journal of Chemistry
Том 28
Первая страница 519
Последняя страница 526
Аффилиация Bozzi Anna; Laboratory of Photonics and Interfaces, Institute of Molecular Chemistry and Biology, Swiss Federal Institute of Technology
Аффилиация Yuranova Tatiana; Laboratory of Photonics and Interfaces, Institute of Molecular Chemistry and Biology, Swiss Federal Institute of Technology
Аффилиация Mielczarski Jerzy; Laboratory Environnement et Minéralurgie(CNRS UMR 7569), CNRS INPL-ENSG
Аффилиация Kiwi John; Laboratory of Photonics and Interfaces, Institute of Molecular Chemistry and Biology, Swiss Federal Institute of Technology
Выпуск 4
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