Skip to main content
Erschienen in: Journal of Iron and Steel Research International 2/2021

31.05.2020 | Original Paper

Effects of PbO poisoning on Ce–Mn/AC catalyst for low-temperature selective catalytic reduction of NO with NH3

verfasst von: Zeng-hui Su, Shan Ren, Tian-shi Zhang, Jie Yang, Yu-han Zhou, Lu Yao

Erschienen in: Journal of Iron and Steel Research International | Ausgabe 2/2021

Einloggen, um Zugang zu erhalten

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

As a common heavy metal in the sintering flue gas, Pb can exist in the form of oxide (PbO) and lead to the decrease in the denitration catalysts activity. Ce–Mn/AC (activated carbon) and PbO–Ce–Mn/AC catalysts were prepared by impregnation method and their selective catalytic reduction of NH3 with NO was studied. Results showed that selective catalytic reduction activity of Ce–Mn/AC decreased remarkably after doping PbO. And the NO conversion of Ce–Mn/AC reached 94.52% at 200 °C, while the value was reduced to 65.8% after doping PbO at the same temperature. The doping of PbO decreased the total pore volume and oxygen functional groups of activated carbon, increased crystallinity of Mn oxides on the catalyst, decreased Mn4+ and chemisorbed oxygen content and then inhibited the “fast selective catalytic reduction” denitration reaction for Ce–Mn/AC catalysts. On this basis, the poisoning effects of lead oxide on Ce–Mn/AC catalysts for low-temperature selective catalytic reduction were revealed.
Literatur
[1]
Zurück zum Zitat Z.H. Wu, Y.Q. Zeng, F.J. Song, S.L. Zhang, Q. Zhong, Mol. Catal. 479 (2019) 110549.CrossRef Z.H. Wu, Y.Q. Zeng, F.J. Song, S.L. Zhang, Q. Zhong, Mol. Catal. 479 (2019) 110549.CrossRef
[2]
Zurück zum Zitat X. Gao, Y. Jiang, Y. Zhong, Z.G. Luo, K.F. Cen, J. Hazard. Mater. 174 (2010) 734–739.CrossRef X. Gao, Y. Jiang, Y. Zhong, Z.G. Luo, K.F. Cen, J. Hazard. Mater. 174 (2010) 734–739.CrossRef
[3]
Zurück zum Zitat S. Ren, S.L. Li, Z.H. Su, J. Yang, H.M. Long, M. Kong, J. Yang, Z.L. Cai, Chem. Eng. J. 351 (2018) 540–547.CrossRef S. Ren, S.L. Li, Z.H. Su, J. Yang, H.M. Long, M. Kong, J. Yang, Z.L. Cai, Chem. Eng. J. 351 (2018) 540–547.CrossRef
[4]
Zurück zum Zitat M. Kong, Q.C. Liu, F.Q. Guo, L.J. Jiang, L. Yao, S. Ren, J. Yang, J. Energy Inst. 91 (2017) 467–472.CrossRef M. Kong, Q.C. Liu, F.Q. Guo, L.J. Jiang, L. Yao, S. Ren, J. Yang, J. Energy Inst. 91 (2017) 467–472.CrossRef
[5]
Zurück zum Zitat S. Ren, F.Q. Guo, J. Yang, L. Yao, Q. Zhao, M. Kong, Chem. Eng. Res. Des. 126 (2017) 278–285.CrossRef S. Ren, F.Q. Guo, J. Yang, L. Yao, Q. Zhao, M. Kong, Chem. Eng. Res. Des. 126 (2017) 278–285.CrossRef
[6]
Zurück zum Zitat J. Yang, J. Zhou, W. Tong, T.S. Zhang, M. Kong, S. Ren, J. Energy Inst. 92 (2019) 1158–1166.CrossRef J. Yang, J. Zhou, W. Tong, T.S. Zhang, M. Kong, S. Ren, J. Energy Inst. 92 (2019) 1158–1166.CrossRef
[7]
Zurück zum Zitat S. Ren, J. Yang, T.S. Zhang, L.J. Jiang, H.M. Long, F.Q. Guo, M. Kong, Chem. Eng. Res. Des. 133 (2018) 1–10.CrossRef S. Ren, J. Yang, T.S. Zhang, L.J. Jiang, H.M. Long, F.Q. Guo, M. Kong, Chem. Eng. Res. Des. 133 (2018) 1–10.CrossRef
[8]
Zurück zum Zitat J. Yang, Z.H. Su, S. Ren, H.M. Long, M. Kong, L.J. Jiang, J. Energy Inst. 92 (2019) 883–891.CrossRef J. Yang, Z.H. Su, S. Ren, H.M. Long, M. Kong, L.J. Jiang, J. Energy Inst. 92 (2019) 883–891.CrossRef
[9]
Zurück zum Zitat R. Khodayari, C.U.I. Odenbrand, Ind. Eng. Chem. Res. 37 (1998) 1196–1202.CrossRef R. Khodayari, C.U.I. Odenbrand, Ind. Eng. Chem. Res. 37 (1998) 1196–1202.CrossRef
[10]
Zurück zum Zitat A. Grossale, I. Nova, E. Tronconi, D. Chatterjee, M. Weibel, J. Catal. 256 (2008) 312–322.CrossRef A. Grossale, I. Nova, E. Tronconi, D. Chatterjee, M. Weibel, J. Catal. 256 (2008) 312–322.CrossRef
[11]
Zurück zum Zitat C. Fang, D.S. Zhang, S.X. Cai, L. Zhang, L. Huang, H.R. Li, P. Maitarad, L.Y. Shi, R.H. Gao, J.P. Zhang, Nanoscale 5 (2013) 9199–9207.CrossRef C. Fang, D.S. Zhang, S.X. Cai, L. Zhang, L. Huang, H.R. Li, P. Maitarad, L.Y. Shi, R.H. Gao, J.P. Zhang, Nanoscale 5 (2013) 9199–9207.CrossRef
[12]
Zurück zum Zitat J. Wu, Z. Zhao, T.F. Huang, P.F. Sheng, J. Zhang, H. Tian, X.Y. Zhao, L.L. Zhao, P. He, J.X. Ren, K.F. Gao, Catal. Commun. 93 (2017) 62–66.CrossRef J. Wu, Z. Zhao, T.F. Huang, P.F. Sheng, J. Zhang, H. Tian, X.Y. Zhao, L.L. Zhao, P. He, J.X. Ren, K.F. Gao, Catal. Commun. 93 (2017) 62–66.CrossRef
[13]
Zurück zum Zitat L. Lu, V. Sahajwalla, C. Kong, D. Harris, Carbon 39 (2001) 1821–1833.CrossRef L. Lu, V. Sahajwalla, C. Kong, D. Harris, Carbon 39 (2001) 1821–1833.CrossRef
[14]
Zurück zum Zitat I. Mochida, S. Kisamori, M. Hironaka, S. Kawano, Y. Matsumura, M. Yoshikawa, Energy Fuels 8 (1994) 1341–1344.CrossRef I. Mochida, S. Kisamori, M. Hironaka, S. Kawano, Y. Matsumura, M. Yoshikawa, Energy Fuels 8 (1994) 1341–1344.CrossRef
[15]
Zurück zum Zitat L.L. Zhou, C.T. Li, L.K. Zhao, G.G. Zeng, L. Gao, Y. Wang, M. Yu, Appl. Surf. Sci. 389 (2016) 532–539.CrossRef L.L. Zhou, C.T. Li, L.K. Zhao, G.G. Zeng, L. Gao, Y. Wang, M. Yu, Appl. Surf. Sci. 389 (2016) 532–539.CrossRef
[16]
Zurück zum Zitat Y.P. Wan, W.R. Zhao, Y. Tang, L. Li, H.J. Wang, Y.L. Cui, J.L. Gu, Y.S. Li, J.L. Shi, Appl. Catal. B Environ. 148 (2014) 114–122.CrossRef Y.P. Wan, W.R. Zhao, Y. Tang, L. Li, H.J. Wang, Y.L. Cui, J.L. Gu, Y.S. Li, J.L. Shi, Appl. Catal. B Environ. 148 (2014) 114–122.CrossRef
[17]
[18]
Zurück zum Zitat H.Q. Wang, X.B. Chen, S. Gao, Z.B. Wu, Y. Liu, X.L. Weng, Catal. Sci. Technol. 3 (2013) 715–722.CrossRef H.Q. Wang, X.B. Chen, S. Gao, Z.B. Wu, Y. Liu, X.L. Weng, Catal. Sci. Technol. 3 (2013) 715–722.CrossRef
[19]
[20]
Zurück zum Zitat L.J. Zhang, S.P. Cui, H.X. Guo, X.Y. Ma, X.G. Luo, J. Mol. Catal. A Chem. 390 (2014) 14–21.CrossRef L.J. Zhang, S.P. Cui, H.X. Guo, X.Y. Ma, X.G. Luo, J. Mol. Catal. A Chem. 390 (2014) 14–21.CrossRef
[21]
[22]
[23]
Zurück zum Zitat W.S. Kijlstra, D.S. Brands, H.I. Smit, E.K. Poels, A. Bliek, J. Catal. 171 (1997) 219–230.CrossRef W.S. Kijlstra, D.S. Brands, H.I. Smit, E.K. Poels, A. Bliek, J. Catal. 171 (1997) 219–230.CrossRef
Metadaten
Titel
Effects of PbO poisoning on Ce–Mn/AC catalyst for low-temperature selective catalytic reduction of NO with NH3
verfasst von
Zeng-hui Su
Shan Ren
Tian-shi Zhang
Jie Yang
Yu-han Zhou
Lu Yao
Publikationsdatum
31.05.2020
Verlag
Springer Singapore
Erschienen in
Journal of Iron and Steel Research International / Ausgabe 2/2021
Print ISSN: 1006-706X
Elektronische ISSN: 2210-3988
DOI
https://doi.org/10.1007/s42243-020-00420-1

Weitere Artikel der Ausgabe 2/2021

Journal of Iron and Steel Research International 2/2021 Zur Ausgabe

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.