• Journal of Inorganic Materials
  • Vol. 35, Issue 5, 573 (2020)
Xiubing HUANG1, Peng WANG1, Jinzhang TAO2, and Zuoshuai XI1
Author Affiliations
  • 1School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China
  • 2Guangdong Provincial Key Laboratory of Rare Earth Development and Application, Guangzhou 510310, China
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    DOI: 10.15541/jim20190266 Cite this Article
    Xiubing HUANG, Peng WANG, Jinzhang TAO, Zuoshuai XI. CeO2 Modified Mn-Fe-O Composites and their Catalytic Performance for NH3-SCR of NO[J]. Journal of Inorganic Materials, 2020, 35(5): 573 Copy Citation Text show less

    Abstract

    The ammonia selective catalytic reduction (NH3-SCR) technology is still necessary to further develop denitration catalytic materials which have good catalytic activity, high stability and environmental friendliness at relatively low temperature (<300 ℃). In this work, the Mn-Fe-O catalyst was prepared by oxalate co-precipitation method and modified with different contents of CeO2 for low temperature NH3-SCR of NO. The catalysts were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), nitrogen adsorption-desorption, X-ray photoelectron spectroscopy (XPS), temperature programmed reduction or desorption (H2-TPR, NH3-TPD). The catalytic results show that as compared with pure Mn-Fe-O sample, Mn-Fe-O modified with suitable CeO2 content shows much better performance for NH3-SCR with 95% conversion of NO and a high N2 selectivity at 80 ℃ under the same reaction conditions. CeO2 modification increases the content of Fe 3+, Mn 3+ and Mn 4+, and the number of surface acid sites on the surface of Mn-Fe-O oxide, which contribute to the adsorption of NH3 and the catalytic reaction. In addition, redox reactions among Fe 2+/Fe 3+, Mn 2+/Mn 3+/Mn 4+ and Ce 3+/Ce 4+ pairs improve the redox ability and stability of the catalyst.
    Xiubing HUANG, Peng WANG, Jinzhang TAO, Zuoshuai XI. CeO2 Modified Mn-Fe-O Composites and their Catalytic Performance for NH3-SCR of NO[J]. Journal of Inorganic Materials, 2020, 35(5): 573
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