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Original Articles

Model of the low-temperature heat release and ignition of n-butanol

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Pages 1176-1193 | Received 01 Jan 2018, Accepted 11 May 2018, Published online: 25 Jun 2018

References

  • P.S. Veloo and F.N. Egolfopoulos, Flame propagation of butanol isomers/air mixtures, Proc. Combust. Inst. 33 (2011), pp. 987–993. doi: 10.1016/j.proci.2010.06.163
  • W. Liu, A.P. Kelley, and C.K. Law, Non-premixed ignition, laminar flame propagation, and mechanism reduction of n-butanol, iso-butanol, and methyl butanoate, Proc. Combust. Inst. 33 (2011), pp. 995–1002. doi: 10.1016/j.proci.2010.05.084
  • J. Beeckmann, L. Cai, and H. Pitsch, Experimental investigation of the laminar burning velocities of methanol, ethanol, n-propanol, and n-butanol at high pressure, Fuel 117 (2014), pp. 340–350. doi: 10.1016/j.fuel.2013.09.025
  • B.W. Weber, K. Kumar, Y. Zhang, and C. Sung, Autoignition of n-butanol at elevated pressure and low-to-intermediate temperature, Combust. Flame 158 (2011), pp. 809–819. doi: 10.1016/j.combustflame.2011.02.005
  • S. Vranckx, K.A. Heufer, C. Lee, H. Olivier, L. Schill, W.A. Kopp, K. Leonhard, C.A. Taatjes, and R.X. Fernandes, Role of peroxy chemistry in the high-pressure ignition of n-butanol - experiments and detailed kinetic modelling, Combust. Flame 158 (2011), pp. 1444–1455. doi: 10.1016/j.combustflame.2010.12.028
  • I. Stranic, D.P. Chase, J.T. Harmon, S. Yang, D.F. Davidson, and R.K. Hanson, Shock tube measurements of ignition delay times for the butanol isomers, Combust. Flame 159 (2012), pp. 516–527. doi: 10.1016/j.combustflame.2011.08.014
  • S.M. Sarathy, S. Vranckx, K. Yasunaga, M. Mehl, P. Oéwald, W.K. Metcalfe, and H.J.A. Curran, A comprehensive chemical kinetic combustion model for the four butanol isomers, Combust. Flame 159 (2012), pp. 2028–2055. doi: 10.1016/j.combustflame.2011.12.017
  • Y. Zhu, D.F. Davidson, and R.K. Hanson, 1-butanol ignition delay times at low temperatures: An application of the constrained-reaction-volume strategy, Combust. Flame 161 (2014), pp. 634–643. doi: 10.1016/j.combustflame.2013.06.028
  • P. Dagaut and C. Togbé, Oxidation kinetics of butanol-gasoline surrogate mixtures in a jet-stirred reactor: Experimental and modeling study, Fuel 87 (2008), pp. 3313–3321. doi: 10.1016/j.fuel.2008.05.008
  • P. Dagaut and C. Togbé, Experimental and modeling study of the kinetics of oxidation of butanol/n-heptane mixtures in a jet-stirred reactor, Energy Fuels 23 (2009), pp. 3527–3535. doi: 10.1021/ef900261f
  • P. Dagaut, S.M. Sarathy, and M.J. Thomson, A chemical kinetic study of n-butanol oxidation at elevated pressure in a jet stirred reactor, Proc. Combust. Inst. 32 (2009), pp. 229–237. doi: 10.1016/j.proci.2008.05.005
  • R. Grana, A. Frassoldati, T. Faravelli, U. Niemann, E. Ranzi, R. Seiser, and K.A.E.A. Seshadri, An experimental and kinetic modeling study of combustion of isomers of butanol, Combust. Flame 157 (2010), pp. 2137–2154. doi: 10.1016/j.combustflame.2010.05.009
  • G. Black, H.J. Curran, S. Pichon, J.M. Simmie, and V. Zhukov, Bio-butanol: Combustion properties and detailed chemical kinetic model, Combust. Flame 157 (2010), pp. 363–373. doi: 10.1016/j.combustflame.2009.07.007
  • P. Dagaut, S.M. Sarathy, and M.J.A. Thomson, Chemical kinetic study of n-butanol oxidation at elevated pressure in a jet stirred reactor, Proceedings of the combustion Institute 32 (2009), pp. 229–237. doi: 10.1016/j.proci.2008.05.005
  • K.M. Van Geem, S.P. Pyl, G.B. Martin, M.R. Harper, and W.H. Green, Accurate high-temperature reaction networks for alternative fuels: Butanol isomers, Ind. Eng. Chem. Res. 49 (2010), pp. 10399–10420. doi: 10.1021/ie1005349
  • M.R. Harper, K.M. Van Geem, S.P. Pyl, G.B. Marin, and W.H. Green, Comprehensive reaction mechanism for n-butanol pyrolysis and combustion, Combust. Flame 158 (2011), pp. 16–41. doi: 10.1016/j.combustflame.2010.06.002
  • Y. Yacoub, R. Bata, and M. Gautam, The performance and emission characteristics of c1–c5 alcohol-gasoline blends with matched oxygen content in a single-cylinder spark ignition engine, Proc. Inst. Mech. Eng. Part A 212 (1998), pp. 363–379. doi: 10.1243/0957650981536934
  • H. Wang, R. Reitz, M. Yao, B. Yang, Q. Jiao, and L. Qiu, Development of an n-heptane/n-butanol-pah mechanism and its application for combustion and soot prediction, Combust. Flame 160 (2013), pp. 504–519. doi: 10.1016/j.combustflame.2012.11.017
  • P. Gaffuri, T. Faravelli, E. Ranzi, N. Cernansky, D. Miller, A. dAnna, and A. Ciajolo, Comprehensive kinetic model for the low temperature oxidation of hydrocarbons, AIChE J. 43 (1997), pp. 1278–1286. doi: 10.1002/aic.690430516
  • H.J. Curran, P. Gaffuri, W.J. Pitz, and C.K. Westbrook, A comprehensive modeling study of n-heptane oxidation, Combust. Flame 114 (1998), pp. 149–177. doi: 10.1016/S0010-2180(97)00282-4
  • N. Peters, G. Paczko, R. Seiser, and K. Seshadri, Temperature cross-over and non-thermal runaway at two-stage ignition of n-heptane, AIChE J. 128 (2002), pp. 38–59.
  • J.C. Prince, C. Trevino, and F.A. Williams, A reduced reaction mechanism for the combustion of n-butane, Combust. Flame 175 (2017), pp. 27–33. doi: 10.1016/j.combustflame.2016.06.033
  • K.A. Heufer, S.M. Sarathy, H.J. Curran, A.C. Davis, C.K. Westbrook, and W.J. Pitz, Detailed kinetic modeling study of n-pentanol oxidation, Energy Fuels 26 (2012), pp. 6678–6685. doi: 10.1021/ef3012596
  • K.A. Heufer, J. Bugler, and H.J. Curran, A comparison of longer alkane and alcohol ignition including new experimental results for n-pentanol and n-hexanol, Proc. Combust. Inst. 34 (2013), pp. 511–518. doi: 10.1016/j.proci.2012.05.103
  • L. Cai, Y. Uygun, C. Togbé, H. Pitsch, H. Olivier, P. Dagaut, and S.M. Sarathy, An experimental and modeling study of n-octanol combustion, Proc. Combust. Inst. 35 (2015), pp. 511–518. doi: 10.1016/j.proci.2014.05.088
  • R. Grana, A. Frassoldati, T. Faravelli, U. Niemann, E. Ranzi, R. Seiser, and K. Seshadri, An experimental and kinetic modeling study of combustion of isomers of butanol, Combust. Flame 157 (2010), pp. 2137–2154. doi: 10.1016/j.combustflame.2010.05.009
  • M. Díaz-González, C. Treviño, and J.C. Prince, A reduced kinetic mechanism for the combustion of n-butanol, Energy and Fuels 32 (2018), pp. 867–874. doi: 10.1021/acs.energyfuels.7b03011
  • S.M. Sarathy, M.J. Thomson, C. Togbé, P. Dagaut, F. Halter, and C. Mounaim-Rousselle, An experimental and kinetic modeling study of n-butanol combustion, Combust. Flame. 156 (2009), pp. 852–864. doi: 10.1016/j.combustflame.2008.11.019
  • S. Vranckx, K.A. Heufer, C. Lee, H. Olivier, L. Schill, W.A. Kopp, and R. Fernandes, Role of peroxy chemistry in the high-pressure ignition of n-butanol - experiments and detailed kinetic modelling. combustion and flame, Combust. Flame 158 (2011), pp. 1444–1455. doi: 10.1016/j.combustflame.2010.12.028
  • Y. Zhu, D.F. Davidson, and R.K. Hanson, 1-butanol ignition delay times at low temperatures: An application of the constrained-reaction-volume strategy, Combust. Flame 161 (2014), pp. 634–643. doi: 10.1016/j.combustflame.2013.06.028
  • J. Troe, The thermal dissociation/recombination reaction of hydrogen peroxide HO(+M)=2OH(+M) III. analysis and representation of the temperature and pressure dependence over wide ranges, Combust. Flame 158 (2011), pp. 594–601. doi: 10.1016/j.combustflame.2010.08.013
  • K.A. Heufer, R.X. Fernandes, H. Olivier, J. Beeckmann, O. Réhl, and N. Peters, Shock tube investigations of ignition delays of n-butanol at elevated pressures between 770 and 1250 k, Proceedings of the Combustion Institute 33 (2011), pp. 359–366. doi: 10.1016/j.proci.2010.06.052

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