Nano BEA zeolite catalysts for the selective catalytic cracking of n-dodecane to light olefins

  • Galal A. Nasser
  • , M. H.M. Ahmed
  • , Mochamad A. Firdaus
  • , Mohammed A. Sanhoob
  • , Idris A. Bakare
  • , E. N. Al-Shafei
  • , M. Z. Al-Bahar
  • , A. N. Al-Jishi
  • , Z. H. Yamani
  • , Ki Hyouk Choi
  • , Oki Muraza*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

Nano BEA zeolite catalysts were synthesized and modified by desilication and then ion-exchanged with Co. The desilication was carried out using 0.1 M of NaOH. The synthesized and modified nano BEA catalysts were characterizedviadifferent characterization techniques. Ammonia temperature program desorption (NH3-TPD) and the pyridine Fourier transform infrared (pyridine-FTIR) were utilized to investigate the acidity of catalysts. X-ray diffraction (XRD),27Al and29Si nuclear magnetic resonance (NMR) spectroscopy techniques were used to examine the structure of the catalysts. The XRD patterns of the as-synthesized nano BEA catalysts were identical to that of the reference, while the NMR analysis revealed the distribution of silicon and aluminum in the BEA structure. The scanning electron microscope (SEM) analysis confirmed that the fabricated catalysts were less than 100 nm. The desilication and Co ion-exchange altered the acidity of the catalyst. The catalysts were evaluated in the cracking of sssssss to light olefins in the temperature range from 400 °C to 600 °C. The conversion increased with the increase in the reaction temperature for both catalysts; the conversion was above 90% for the Co-BEA catalyst at a temperature above 450 °C. The yield of light olefins also increased at higher temperatures for both catalysts, while at a lower temperature the yield to light olefins wasca.40% over that of Co-BEA.

Original languageEnglish
Pages (from-to)7904-7912
Number of pages9
JournalRSC Advances
Volume11
Issue number14
DOIs
StatePublished - 5 Jan 2021

Bibliographical note

Publisher Copyright:
© The Royal Society of Chemistry 2021.

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ASJC Scopus subject areas

  • General Chemistry
  • General Chemical Engineering

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