Promotion of protolytic pentane conversion on H-MFI zeolite by proximity of extra-framework aluminum oxide and BrØnsted acid sites

  • Yang Zhang
  • , Ruixue Zhao
  • , Maricruz Sanchez-Sanchez
  • , Gary L. Haller
  • , Jianzhi Hu
  • , Ricardo Bermejo-Deval
  • , Yue Liu
  • , Johannes A. Lercher

Research output: Contribution to journalArticlepeer-review

58 Scopus citations

Abstract

The activity of strong Brønsted acid sites in H-MFI zeolites for pentane cracking and dehydrogenation is enhanced by the presence of extra-framework aluminum in spatial proximity. The steric proximity of these two sites is deduced from the perturbation of OH groups on extra-framework aluminum oxide by pyridine or pentane adsorbed on Brønsted acid sites manifested in the IR spectra. The turnover frequencies of overall cracking and dehydrogenation on such sites are about 50 and 80 times higher than on isolated strong Brønsted acid sites. While pentane does not adsorb stronger, the site pair stabilizes cracking and dehydrogenation transition states mainly via increasing the activation entropy. This is interpreted as a later transition state for the cracking and dehydrogenation. The results suggest that controlled steaming can be used to enhance catalytic activity of zeolite Brønsted acid sites.

Original languageEnglish
Pages (from-to)424-433
Number of pages10
JournalJournal of Catalysis
Volume370
DOIs
StatePublished - Feb 2019

Keywords

  • Cracking
  • Dehydrogenation
  • H-MFI
  • Steaming
  • Transition state

Fingerprint

Dive into the research topics of 'Promotion of protolytic pentane conversion on H-MFI zeolite by proximity of extra-framework aluminum oxide and BrØnsted acid sites'. Together they form a unique fingerprint.

Cite this