SELECTIVE CATALYTIC REDUCTION OF NITROGEN MONOXIDE BY DECANE ON COPPER-EXCHANGED MORDENITES

Citation
B. Coq et al., SELECTIVE CATALYTIC REDUCTION OF NITROGEN MONOXIDE BY DECANE ON COPPER-EXCHANGED MORDENITES, Applied catalysis. B, Environmental, 6(3), 1995, pp. 271-289
Citations number
45
Categorie Soggetti
Chemistry Physical","Engineering, Environmental
ISSN journal
09263373
Volume
6
Issue
3
Year of publication
1995
Pages
271 - 289
Database
ISI
SICI code
0926-3373(1995)6:3<271:SCRONM>2.0.ZU;2-M
Abstract
A series of Cu/mordenite catalysts were prepared by competitive ion ex change, characterized by temperature programmed reduction with hydroge n, temperature programmed desorption of NO, adsorption of pyridine and tested for the selective catalytic reduction of NO by decane in prese nce of a large excess of oxygen. At low Cu content (exchange% less tha n or equal to 53%), the TPR profiles show the presence of two peaks of comparable areas, the accessibility to Cu sites is high (NO/Cu > 0.8) and the micropore volume remains unchanged, thus suggesting that Cu2 ions remain isolated and are reduced in two successive steps: Cu2+ -- > Cu+ at about 510 K and Cu+ --> Cu-o at 600-700 K. At higher Cu conte nt (exchange% > 60%), the TPR profiles are modified with a large incre ase of the low temperature peak; the accessibility to Cu sites decreas es (NO/Cu = 0.45-0.49), and the micropore volume also decreases, thus suggesting the formation of Cu oxide dusters in the lattice of the mor denite. The acidity of the mordenite also decreases upon exchange. The activity for the NO reduction is proportional to the number of Cu2+ i ons up to 53% exchange, then decreases. Isolated Cu2+ ions appear then more active than CuO clusters or protons for the selective reduction of NO by decane.