Title of article :
Catalytic conversion of CO, NO and SO2 on supported sulfide catalysts: II. Catalytic reduction of NO and SO2 by CO
Author/Authors :
Zhuang، نويسنده , , S.-X and Yamazaki، نويسنده , , M and Omata، نويسنده , , K and Takahashi، نويسنده , , Y and Yamada، نويسنده , , M، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
To investigate the possibility of simultaneous catalytic reduction of NO and SO2 by CO, reactions of NO, NOCO, and NOSO2CO were performed on γ-alumina-supported sulfides of transition metals including Co, Mo, CoMo and FeMo.
decomposed into N2O and N2 accompanied with the formation of SO2; this serious oxidation of lattice sulfur resulted in the deactivation of the catalysts. The addition of CO to the NO stream suppressed SO2 formation and yielded COS instead. A stoichiometric conversion of NO and CO to N2 and CO2 was observed above 350°C on the CoMo and the FeMo catalysts. Although the CO addition lengthened catalyst life, it was not enough to maintain activity. After the NOCO reaction, an XPS analysis showed the growth of Mo6+ and SO42− peaks, especially for the sulfided FeMo/Al2O3; the FeMo catalyst underwent strong oxidation in the NOCO reaction. The NO and the NOCO reactions proceeded non-catalytically, consuming catalyst lattice sulfur to yield SO2 or COS.
dition of SO2 in the NOCO system enabled in situ regeneration of the catalysts; the catalysts oxidized through abstraction of lattice sulfur experienced anew reduction and sulfurization through the SO2CO reaction at higher temperature. NO and SO2 were completely and catalytically converted at 400°C on the sulfided CoMo/Al2O3. By contrast, the sulfided FeMo/Al2O3 was easily oxidized by NO and hardly re-sulfided under the test conditions.
ion states of the metals before and after the reactions were determined. Silica and titania-supported CoMo catalysts were also evaluated to study support effects.
Keywords :
NO , CO , Sulfide catalysts , Catalytic reduction , Cobalt molybdenum catalyst , SO2
Journal title :
Applied Catalysis B: Environmental
Journal title :
Applied Catalysis B: Environmental