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1.
Chemosphere ; 67(4): 718-23, 2007 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-17184819

RESUMEN

The selective catalytic reduction (SCR) characteristics of NO and NO(2) over V(2)O(5)-WO(3)-MnO(2)/TiO(2) catalyst using ammonia as a reducing agent have been determined in a fixed-bed reactor at 200-400 degrees C. The presence of NO(2) enhances the SCR activity at lower temperatures and the optimum ratio of NO(2)/NO(x) is found to be 0.5. During the SCR reactions, there are some side reactions occurred such as ammonia oxidation and N(2)O formation. At higher temperatures, the selective catalytic oxidation of ammonia and the nitrous oxide formation compete with the SCR reactions. The denitrification (DeNO(x)) conversion decreases at lower temperatures but it increases at higher temperatures with increasing SO(2) concentration. The presence of SO(2) in the feeds inhibits N(2)O formation.


Asunto(s)
Amoníaco/química , Dióxido de Nitrógeno/química , Óxidos de Nitrógeno/química , Dióxido de Azufre/química , Catálisis , Oxidación-Reducción
2.
Chemosphere ; 66(1): 54-9, 2007 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-16828142

RESUMEN

The oxidation characteristics of NO over Pt/TiO2 (anatase, rutile) catalysts have been determined in a fixed bed reactor as a function of O2, CO and SO2 concentrations in the presence of 8% water. The conversion of NO to NO2 increases with increasing O2 concentration up to 12% and it levels off. This saturation effect is more pronounced over rutile-Pt/TiO2 (r-Pt/TiO2) than that of anatase-Pt/TiO2 (a-Pt/TiO2). The presence of CO increases NO oxidation significantly and this enhanced effect is more pronounced on a-Pt/TiO2 than that on r-Pt/TiO2 with increasing CO concentration at lower temperatures. The same effect is also observed on the catalysts with different Pt and tungsten oxide (WO3) loadings. With increasing Pt and WO3 loadings on TiO2 support (Pt-WO3/TiO2), formation of NO2 is high even at lower temperatures. The presence of SO2 significantly suppresses the oxidation of NO over both r-Pt/TiO2 and a-Pt/TiO2 catalysts but it is less pronounced due to low stability of sulfate on a-Pt/TiO2.


Asunto(s)
Monóxido de Carbono/química , Óxidos de Nitrógeno/química , Platino (Metal)/química , Catálisis , Dióxido de Nitrógeno/química , Oxidación-Reducción , Oxígeno/química , Dióxido de Azufre/química , Temperatura , Titanio/química
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