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Active site exposure of sulfur-etched CeO2 nanorods for nitrogen oxide reduction

  • Hao Fan
  • , Zhenxing Shen
  • , Xiuru Wang
  • , Jie Fan
  • , Jian Sun
  • , Ning Zhong
  • , Jiaxiang Sun
  • Xi'an Jiaotong University
  • Xinjiang Zhongtai Group Engineering Co. LTD

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

CeO2 is an extensively used catalyst in denitration reaction, however, weak acidity of CeO2 is not conducive for NO conversion. Traditional sulfur etching by impregnation results in a large amount of sulfate deposition. To address this limitation, washing with deionized water was added following traditional impregnation (S1.0-CeO2-wash catalyst). The washing process successfully reduced the sulfate deposition, optimized the pore structure of the S1.0-CeO2-wash catalyst. The NO removal rate of the S1.0-CeO2-wash sample reached approximately 90% at 250–350 °C. Additionally, the Ce4+ content on the surface of S1.0-CeO2-wash catalyst increased. Moreover, the action of the S1.0-CeO2-wash catalyst in the reaction was determined to follow both Eley–Rideal (E–R) and Langmuir–Hinshelwood (L–H) mechanisms. This work provides a reference for the acid etching of other catalysts.

Original languageEnglish
Article number101582
JournalAtmospheric Pollution Research
Volume13
Issue number11
DOIs
StatePublished - Nov 2022

Keywords

  • Acidity
  • HSO
  • Heterogeneous catalysis
  • Oxygen activation
  • Reaction mechanism
  • Selective catalytic reaction

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