Catalytic conversion of CO, NO and SO2 on the supported sulfide catalyst: I. Catalytic reduction of SO2 by CO
Citation
Sx. Zhang et al., Catalytic conversion of CO, NO and SO2 on the supported sulfide catalyst: I. Catalytic reduction of SO2 by CO, APP CATAL B, 24(2), 2000, pp. 89-96
Categorie Soggetti
Physical Chemistry/Chemical Physics","Environmental Engineering & Energy
Journal title
APPLIED CATALYSIS B-ENVIRONMENTAL
SICI code
0926-3373(20000117)24:2<89:CCOCNA>2.0.ZU;2-5
Abstract
Catalytic reduction of SO2 to elemental sulfur by CO has been systematicall
y investigated over gamma-Al2O3-supported sulfide catalysts of transition m
etals including Co, Mo, Fe, CoMo and FeMo with different loadings of the me
tals. The sulfided CoMo/Al2O3 exhibited outstanding activity: a complete co
nversion of SO2 was achieved at a temperature of 300 degrees C. The reactio
n proceeds catalytically and consistently over time and most efficiently at
a molar feed ration CO/SO2 = 2. A precursor CoMo/Al2O3 oxide which experie
nced sulfurization through the CO-SO2 reaction yielded a working sulfide ca
talyst having sulfides decreased in order of 4% Co 16% Mo > 4% Fe 15% Mo >
16% Mo greater than or equal to 25% Mo > 14% Co greater than or equal to 4%
Co > 4% Fe. A DRIFT study showed that CO adsorbs exclusively on CoMo phase
and that SO2 predominantly on gamma-Al2O3. It is suggested that the Co-Mo-
S structure is more adequate than the other metal-sulfur structures for the
formation of a carbonyl sulfide (COS) intermediate because of the proper s
trength of metal-sulfur bond, and catalytically works with gamma-Al2O3 for
the COS-SO2 reaction. (C) 2000 Elsevier Science B.V. All rights reserved.