Mi. Zaki et al., Influence of CuOx additives on CO oxidation activity and related surface and bulk behaviours of Mn2O3, Cr2O3 and WO3 catalysts, APP CATAL A, 198(1-2), 2000, pp. 247-259
CuOx-modified and unmodified Mn2O3,Cr2O3 and WO3 catalysts were prepared by
impregnation with Cu(NO3)(2) solution and/or calcination at 700 degrees C
of appropriate precursor compounds. Bulk phase composition and thermochemic
al stability were characterized by X-ray diffractometry, infrared spectrosc
opy and thermogravimetry. The surface area, chemical composition, oxidation
state and chemisorption capacity were determined by X-ray photoelectron sp
ectroscopy and sorptometry of N-2, O-2 and CO gas molecules. The catalytic
CO oxidation activity was tested, using a gas circulating system equipped w
ith a fixed-bed microreactor and a gas chromatograph. The CuOx additives we
re found to promote markedly the otherwise insignificant CO oxidation activ
ity of WO3 at 250-400 degrees C. This was related to concomitant improvemen
t primarily in the lattice oxygen reactivity, and in the O-2 chemisorption
capacity. The already high CO oxidation activities of Mn2O3 and Cr2O3 catal
ysts at 150-250 degrees C were found to be, respectively, slightly and hard
ly improved by CuOx additives, despite a marked improvement in oxygen chemi
sorption capacity. This was attributed to establishment on the unmodified c
atalysts of a favourable electron-mobile environment. In oxygen-rich reacti
on atmosphere, both the modified and unmodified catalysts were thermochemic
ally stable. However, in lean oxygen atmosphere, Cr2O3 and CuOx-modified WO
3 were relatively the most stable test catalysts. (C) 2000 Elsevier Science
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