Influence of the type of reducing agent (H2, CO, C3H6 and C3H8) on the reduction of stored NO X in a Pt/BaO/Al2O3 model catalyst

Topics in Catalysis - Tập 30 - Trang 161-168 - 2004
Hussam Abdulhamid1,2, Erik Fridell1, Magnus Skoglundh1,2
1Competence Center for Catalysis, Chalmers University of Technology, Göteborg, Sweden
2Department of Materials Surface Chemistry-Applied Surface Chemistry, Chalmers University of Technology, Göteborg, Sweden

Tóm tắt

In this investigation, a comparative study for a NO X storage catalytic system was performed focusing on the parameters that affect the reduction by using different reductants (H2, CO, C3H6 and C3H8) and different temperatures (350, 250 and 150 °C), for a Pt/BaO/Al2O3 catalyst. Transient experiments show that H2 and CO are highly efficient reductants compared to C3H6 which is somewhat less efficient. H2 shows a significant reduction effect at relatively low temperature (150 °C) but with a low storage capacity. We find that C3H8 does not show any NO X reduction ability for NO X stored in Pt/BaO/Al2O3 at any of the temperatures. The formation of ammonia and nitrous oxide is also discussed.

Tài liệu tham khảo

Takahashi N., Shinjoh H., Iijima T., Suzuki T., Yamazaki K., Yokota K., Suzuki H., Miyoshi N., Matsumoto S. and Tanizawa T. (1996). Catal. Today 27: 63 Bögner W., Krämer M., Krutzsch B., Pischinger S., Voigtländer D., Wenninger G., Wirbeleit F., Brogan M.S., Brisley R.J. and Webster D.E. (1995). Appl. Catal. B 7: 153 Fridell E., Skoglundh M., Westerberg B., Johansson S. and Smedler G.J. (1999). Catal. 183: 196 Liotta L.F., Macaluso A., Arena G.E., Livi M., Centi G. and Deganello G. (2002). Catal. Today 75: 439 Shelef M., Graham G.W. and McCabe R.W. (2002). Catal. Sci. Ser. 2: 343 Arena G.E., Bianchini A., Centi G. and Vazzana F. (2001). Top. Catal. 16: 157 Amberntsson A., Skoglundh M., Jonsson M. and Fridell E. (2002). Catal. Today 73: 279 Matsumoto S., Ikeda Y., Suzoki H., Ogai M. and Miyoshi N. (2000). Appl. Catal. B 25: 115 Salasc S., Skoglundh M. and Fridell E. (2002). Appl. Catal. B 36: 145 Huang H.Y., Long R.Q. and Yang R.T. (2001). Energy Fuels 15: 205 Nova I., Castoldi L., Lietti L., Tronconi E. and Forzatti P. (2002). Catal. Today 75: 431 Jang B., Yeon T., Han H., Park Y. and Yie J. (2001). Catal. Lett. 77: 21 Lietti L., Forzatti P., Nova I. and Tronconi E. (2001). J. Catal. 204: 175 Erkfeldt S., Jobson E. and Larsson M. (2001). Top. Catal. 16: 127 Skoglundh M., Johansson H., Lövendahl L., Jansson K., Dahl L. and Hirschauer B. (1996). Appl. Catal. B 7: 299 Cant N. and Patterson M. (2003). Catal. Lett. 85: 153 Amberntsson A., Persson H., Engström P. and Kasemo B. (2001). Appl. Catal. B 31: 27 Balcon S., Potvin C., Salin L., Tempère J.F. and Djéga- Mariadassou G. (1999). Catal. Lett. 60: 39 Burch R. and Millington P.J. (1995). Catal. Today 26: 185 Fridell E., Persson H., Olsson L., Westerberg B., Amberntsson A. and Skoglundh M. (2001). Top. Catal. 16: 133