2023 AIChE Annual Meeting
(170d) Novel but Simple Method to Prepare Vanadia Catalyst with Superior Sulphur Resistance and NOx Removal Activity
Author
NH3 + H2O + SO3 = NH4HSO4 (l) ---- (1)
Thus, the current technology has a huge dilemma in achieving both low-temperature activity and high sulfur resistance. Here, we report that Y zeolite can be physically mixed with the vanadia catalyst to effectively trap liquid ABS, protecting most V sites from deactivation by ABS and demonstrating stable NH3-SCR performance at 220 °C. The sulfur resistance of physically mixed catalyst was 3 times higher than VWTi, and order of magnitude higher compared to the commercial low-temperature catalysts (Cu-SSZ-13 and Mn/TiO2). Moreover, the activity of VWTi+ Z recovered almost completely after regeneration at 350 °C where ABS decomposes
This study proposed a simple but novel âphysical mixingâ strategy to achieve excellent sulfur resistance of the vanadia NH3-SCR catalyst with high NOx removal ability. Moreover, the developed physical mixing catalyst was transferred to the POSCO steelmaking company and successfully commercialized in their sintering process.