M. Valden et al., REACTIVITY OF PD AL2O3, PD/LA2O3-AL2O3 AND PD/LAALO3 CATALYSTS FOR THE REDUCTION OF NO BY CO - CO AND NO ADSORPTION/, Journal of catalysis, 161(2), 1996, pp. 614-625
Industrially manufactured Pd catalysts supported on Al2O3, La2O3-Al2O3
, and LaAlO3 were prepared to contain different amounts of PdO. The ef
fect of the chemical state of Pd on adsorption and thermal properties
of CO and NO were investigated by temperature-programmed desorption (T
PD) and Fourier transform infrared spectroscopy (FT-IR). CO adsorbed m
olecularly on all Pd catalysts forming linear and bridged CO species.
The presence of PdO was found to strongly decrease the CO binding ener
gy on Al3O3-supported Pd catalysts, as indicated by the subsequent low
ering of the temperature of the TPD peak maximum. The destabilization
of CO bonding was even further enhanced on Pd catalysts supported on L
aAlO3 and La2O3-Al2O3. The interaction of CO with the Al2O3, La2O3-Al2
O3, and LaAlO3 supports was negligible. In contrast to the behavior of
CO, NO was observed to adsorb molecularly on Al2O3, La2O3-Al2O3, and
LaAlO3 supports with high efficiency. Strong absorption bands of NO in
the range of 1600-1200 cm(-1) were detected. The dissociation of NO,
followed by the formation of N-2 and N2O during the temperature progra
mmed reaction, was seen on all the Pd catalysts. The importance of the
chemical state of Pd and the La-induced effects on the reactivity of
CO and NO are discussed. (C) 1996 Academic Press, Inc.