$Pt/CeO_2$ 촉매와 Tight Contact 한 상태의 Model Soot 산화에 NO가 미치는 영향에 관한 실험적 연구

Effect of NO on Catalytic Soot Oxidation in Tight Contact with $Pt/CeO_2$ Using a Flow Reactor System

  • 투고 : 2010.04.28
  • 심사 : 2010.12.30
  • 발행 : 2011.05.01

초록

Active regeneration in CDPF requires $O_2$ which regenerates soot at high temperature. However, small amount of NO can interrupt $O_2$ regeneration in CDPF. To verify this phenomena, soot oxidation experiments using a flow reactor with a $Pr/CeO_2$ catalyst are carried out to simulate Catalyzed Diesel Particulate Filter (CDPF) phenomena. Catalytic soot oxidation with and without small amount of NO is conducted under tight contact condition. As the heating rate rises, the temperature gap of maximum reaction rate is increased between with and without 50ppm NO. To accelerate the $NO_2$ de-coupling effect, CTO process is performed to eliminate interfacial contact for that time. As CTO process is extended, temperature which indicates peak reaction rate increases. From this result, it is found that small amount of NO can affect tight contact soot oxidation by removal of interfacial contact between soot and catalyst.

키워드

참고문헌

  1. VDA, Auto Annual Reports 2006, 2006.
  2. E. Johannes, X. Li and J. Towgood, "Transient Performance of a Non-catalytic Syngas Generator for Active DPF Regeneration and NOx Reduction," SAE 2008-01-0446, 2008.
  3. E. Cauda, D. Fino, G. Saracco and Specchia, "Preparation and Regeneration of a Catalytic Diesel Particulate Filter," Chem. Eng. Sci., Vol.62, pp.5182-5185, 2007. https://doi.org/10.1016/j.ces.2006.12.048
  4. J. P. A. Neeft, M. Makkee and J. A. Moulijn, "Diesel Particulate Emission Control," Fuel Process Technol., Vol.47, pp.1-69, 1996. https://doi.org/10.1016/0378-3820(96)01002-8
  5. B. R. Stanmore, J. F. Brilhac and P. Gilot, "The Oxidation of Soot: A Review of Experiments, Mechanism and Models," Carbon, Vol.39, pp.2247-2268, 2001. https://doi.org/10.1016/S0008-6223(01)00109-9
  6. B. W. L. Southward and S. Basso, "An Investigation into the $NO_{2}$ De-coupling of Catalyst to Soot Contact and Its Implications for Catalysed DPF Performance," SAE 2008-01- 0481, 2008.
  7. M. Issa, H. Mahzoul, A. Brillard and J. F. Brilhac, "Effect of the Contact between Carbon Black and Catalyst Particles on Carbon Oxidation Rate: Experiment and Modeling," SAE 2007-24-0091, 2007.
  8. J. H. Lee, H. S. Lee, S. Song and K. M. Chun, "Experimental Investigation of Soot Oxidation Characteristic with $NO_{2}$ and $O_{2}$ Using a Flow Reactor Simulating DPF," SAE 2007-01-1270, 2007.
  9. H. Lin, Y. Li, W. Shangguan and Z. Huang, "Soot Oxidation and NOx Reduction over $BaAl_{2}O_{4}$ Catalyst," Combust. Flame, Vol.156, pp.2063-2070, 2009. https://doi.org/10.1016/j.combustflame.2009.08.006
  10. C. H. Song, J. W. Jung, S. Song and K. M. Chun, "Experimental Study on Soot Oxidation Characterization of Pt/$CeO_{2}$ Catalyst with NO and $O_{2}$ using a Flow Reactor System," SAE 2009-01-1475, 2009