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On the hydrothermal stability of CuAPSO-34 microporous catalysts for N 2O decomposition: A comparison with CuZSM-5

  • B. I. Palella
  • , M. Cadoni
  • , A. Frache
  • , H. O. Pastore
  • , R. Pirone
  • , G. Russo
  • , S. Coluccia
  • , L. Marchese

Research output: Contribution to journalArticlepeer-review

Abstract

The hydrothermal stability of CuAPSO-34 microporous silicoaluminophosphates with chabasite structures has been investigated and compared to that of a copper-exchanged ZSM-5 zeolite by a combined XRD, FTIR, and catalytic study. CuAPSO-34 showed a higher hydrothermal structural stability (steaming 80 h at 600°C), as found by XRD. Spectroscopic FTIR investigation of adsorbed CO revealed that upon this steaming procedure the concentration of monovalent copper ions in CuAPSO-34 was not significantly affected, whereas, even after a less severe steaming (60 h at 550°C), these species dramatically decreased in CuZSM-5, and extraframework Al3+ ions were simultaneously formed. Consequently, the high activity in N 2O decomposition shown by fresh CuZSM-5 was essentially lost after steaming, while CuAPSO-34 exhibited a significantly milder deactivation.

Original languageEnglish
Pages (from-to)100-106
Number of pages7
JournalJournal of Catalysis
Volume217
Issue number1
DOIs
Publication statusPublished - 1 Jul 2003

Keywords

  • BET
  • CO adsorption
  • Chabasite
  • CuAPSO-34
  • CuZSM-5
  • Deactivation
  • FTIR
  • Hydrothermal stability
  • NO decomposition
  • Steam ageing
  • XRD

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