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Progress in detailed kinetic modeling of the combustion of oxygenated components of biofuels

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  • Tran, Luc Sy
  • Sirjean, Baptiste
  • Glaude, Pierre-Alexandre
  • Fournet, René
  • Battin-Leclerc, Frédérique

Abstract

Due to growing environmental concerns and diminishing petroleum reserves, a wide range of oxygenated species has been proposed as possible substitutes to fossil fuels: alcohols, methyl esters, acyclic and cyclic ethers. After a short review the major detailed kinetic models already proposed in the literature for the combustion of these molecules, the specific classes of reactions considered for modeling the oxidation of acyclic and cyclic oxygenated molecules respectively, are detailed.

Suggested Citation

  • Tran, Luc Sy & Sirjean, Baptiste & Glaude, Pierre-Alexandre & Fournet, René & Battin-Leclerc, Frédérique, 2012. "Progress in detailed kinetic modeling of the combustion of oxygenated components of biofuels," Energy, Elsevier, vol. 43(1), pages 4-18.
  • Handle: RePEc:eee:energy:v:43:y:2012:i:1:p:4-18
    DOI: 10.1016/j.energy.2011.11.013
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    1. Penner, S.S. & Berlad, A.L., 1995. "Fundamental combustion research in support of industrial applications," Energy, Elsevier, vol. 20(4), pages 311-324.
    2. Baker, Erin & Keisler, Jeffrey M., 2011. "Cellulosic biofuels: Expert views on prospects for advancement," Energy, Elsevier, vol. 36(1), pages 595-605.
    3. He, Jie & Zhang, Wennan, 2011. "Techno-economic evaluation of thermo-chemical biomass-to-ethanol," Applied Energy, Elsevier, vol. 88(4), pages 1224-1232, April.
    4. Yuriy Román-Leshkov & Christopher J. Barrett & Zhen Y. Liu & James A. Dumesic, 2007. "Production of dimethylfuran for liquid fuels from biomass-derived carbohydrates," Nature, Nature, vol. 447(7147), pages 982-985, June.
    5. Lanny D. Schmidt & Paul J. Dauenhauer, 2007. "Hybrid routes to biofuels," Nature, Nature, vol. 447(7147), pages 914-915, June.
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