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A review on selective catalytic reduction of NOx by supported catalysts at 100-300 degrees C-catalysts, mechanism, kinetics

Journal

CATALYSIS SCIENCE & TECHNOLOGY
Volume 4, Issue 1, Pages 14-25

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3cy00414g

Keywords

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Funding

  1. National Natural Science Foundation of China [51108169, 51278177]
  2. National High Technology Research and Development Program of China (863 Program) [2011AA060803]
  3. Scientific and Technological Major Special Project of Hunan Province in China [2010XK6003]
  4. National Undergraduate Innovation Experiment Project [531107061105]

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Removing NOx by supported catalysts is important for industrial flue gases and exhaust fumes of diesel engines at low temperature (100-300 degrees C). However, it is still a challenge to develop the low-temperature catalyst (LTC) for selective catalytic reduction of NOx, especially at temperatures below 200 degrees C. This paper reviews the effect of the different carriers with different active centres. Most supported metal oxide catalysts are prepared by impregnation method. But under the same condition, catalysts perform better if they were prepared by sol-gel method. Also, this paper described and compared the research progress of reaction mechanism and kinetics of the supported catalysts which were used for the selective catalytic reduction of NOx at low temperature. There are different mechanisms because of the different reducing agents and active centres. The L-H and E-R mechanisms, or both of them coexisting, can explain the overall mechanism. In order to research the mechanism thoroughly, the exploration of the reactions of the surface chemical process may be a direction to develop low temperature supported catalysts for removing NOx.

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