An experimental and kinetic modeling study of γ-valerolactone pyrolysis

Ruben De Bruycker, Hans Heinrich Carstensen, Marie Françoise Reyniers, Guy B. Marin, John M. Simmie, Kevin M. Van Geem

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

16 Citations (Scopus)

Abstract

The pyrolysis of γ-valerolactone, a cyclic ester readily obtainable from cellulosic biomass and which has potential as a fuel, was investigated from 873 to 1113 K at 0.17 MPa in a tubular continuous flow reactor. Unimolecular decomposition of γ-valerolactone forms 4-pentenoic acid and its selectivity increases upon addition of toluene, a radical scavenger. A kinetic model, consisting of 520 species and 3589 reactions, was developed. Kinetic and thermodynamic data relevant for γ-valerolactone consumption, including hydrogen abstraction, hydrogen addition and fuel radical decomposition, were calculated at the CBS-QB3 level of theory. Experimental and calculated mole fraction profiles are in good agreement. Reaction path analysis shows that γ-valerolactone is mainly consumed by isomerization to 4-pentenoic acid and hydrogen abstraction from the carbon atom α to the carbonyl group and the carbon atom α to the ring oxygen. C. C scission of 4-pentenoic acid forming allyl and carboxy methyl is an important source of radicals.

Original languageEnglish
Pages (from-to)183-200
Number of pages18
JournalCombustion and Flame
Volume164
DOIs
Publication statusPublished - 1 Feb 2016

Keywords

  • 4-pentenoic acid
  • Isodesmic reaction
  • Kinetic model
  • Pyrolysis
  • γ-valerolactone

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