Greener synthesis of 1,2-butylene carbonate from CO2 using graphene-inorganic nanocomposite catalyst

Victor Onyenkeadi, Suela Kellici, Basudeb Saha

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13 Citations (Scopus)

Abstract

The synthesis of 1,2-butylene carbonate (BC) from cycloaddition reaction of 1,2-butylene oxide (BO) and carbon dioxide (CO2) was investigated using several heterogeneous catalysts in the absence of organic solvent. Continuous hydrothermal flow synthesis (CHFS) has been employed as a rapid and cleaner route for the synthesis of a highly efficient graphene-inorganic heterogeneous catalyst, ceria-lanthana-zirconia/graphene nanocomposite, represented as Ce–La–Zr/GO. The heterogeneous catalysts have been characterised using transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), X-ray powder diffraction (XRD) and nitrogen adsorption/desorption (BET for measuring the surface area/pore size distribution),. Ceria- lanthana-zirconia/graphene nanocomposite catalyst (Ce–La–Zr/GO) exhibited high catalytic activity as compared to other reported heterogeneous catalysts in the absence of any organic solvent with a selectivity of 76% and 64% yield of 1,2-butylene carbonate at the reaction conditions of 408 K, 75 bar in 20 h.
Original languageEnglish
Pages (from-to)867-876
Number of pages10
JournalEnergy
Volume165
Issue numberPART A
DOIs
Publication statusPublished - 20 Sept 2018
EventSEEP 2017 –10th International Conference on Sustainable Energy & Environmental Protection -
Duration: 27 Jun 2017 → …

Bibliographical note

Publisher Copyright:
© 2018 Elsevier Ltd

Keywords

  • 1,2-butylene carbonate (BC)
  • Carbon dioxide (CO)
  • Ceria
  • Continuous hydrothermal flow synthesis (CHFS)
  • Heterogeneous catalysts
  • Lanthana and zirconia graphene oxide nanocomposite (Ce–La–Zr/GO)

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