会议专题

NOz REDUCTION IN A FLUIDIZED BED REACTOR WITH Fe/ZSM-5 CATALYST AND PROPYLENE AS REDUCTANT

The performance of a fluidized bed catalytic reactor was investigated for NOx reduction using a Fe/ZSM-5 catalyst and propylene as the reducing agent. The effects of inlet NOx concentration, propylene to NOx molar ratio, flue gas oxygen concentration and fluidizing gas velocity on NOx conversion were studied using simulated flue gases. The results showed that the NOx conversion decreased with decreasing the inlet NOx concentration, and propylene to NOx molar ratio. The increase in flue gas oxygen concentration also imposed a significant negative impact. As the flue gas oxygen concentration increased, NOx reduction decreased while propylene conversion increased at a given propylene to NOx molar ratio, due to the oxidation of propylene in the presence of high oxygen concentration. The increase in fluidization gas velocity reduced the contact time between reactant and the catalyst particles due to the increased bubble size and bubble rise velocity. As a result, the NOx reduction decreased as the gas velocity increased.

NOz SCR propylene Fe/ZSM-5 fluidized bed

Terris Yang Xiaotao Bi

Department of Chemical and Biological EngineeringUniversity of British Columbia, Vancouver, BC, V6T Department of Chemical and Biological Engineering University of British Columbia, Vancouver, BC, V6T

国际会议

第20届国际流化床燃烧会议(20th International Conference on Fluidized Bed Combustion)

西安

英文

897-901

2009-05-18(万方平台首次上网日期,不代表论文的发表时间)