4.7 Article

Activity and thermal stability of Pt/Ce0.64Mn0.16R0.2Ox (R = Al, Zr, La, or Y) for soot and NO oxidation

期刊

FUEL PROCESSING TECHNOLOGY
卷 137, 期 -, 页码 38-47

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.fuproc.2015.03.027

关键词

Soot oxidation; NO oxidation; Platinum; CeO2-MnOx mixed oxides; Thermal stability

资金

  1. National High Technology Research and Development Project of China (863 Program) [2013AA065304]
  2. Sichuan Provincial Science and Technology Project of China [2012FZ0008]

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In this study, Al2O3, ZrO2, La2O3, and Y2O3 were separately introduced into Pt/CeO2-MnOx catalyst to improve the thermal stability of catalysts and obtain a better soot and NO oxidation activity after thermal treatment. CeO2-MnOx-ROx (R = Al, La,Y, or Zr) mixed oxides were prepared by a co-precipitation method. The catalysts were characterized by XRD, BET, H-2-TPR, CO chemisorption, XPS, TG analysis, soot-TPO, and NO-TPO. It is found that the introduction of Rn+ into CeO2-MnOx markedly increases the thermal stability of the catalysts for soot and NO oxidation, remaining a better catalytic oxidation activity. On the one hand, after high-temperature aging, for the modified catalyst Pt/CeMnROx, the ignition temperature of soot oxidation (T-i) and maximal soot oxidation rate temperature (T-m) increase by 30-50 degrees C and 4-32 degrees C, respectively, whereas Al3+-modified catalyst shows the best thermal stability. On the other hand, due to a key role of NO2 as a strong oxidizing agent in soot oxidation process, the NO oxidation activity is often considered as an important aspect. This work shows that Rn+-modified catalysts display a better stability on NO oxidation activity after aging. Some factors leading to the thermal deactivation of catalysts are also discussed in this paper. (C) 2015 Elsevier B.V. All rights reserved.

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