Dossier: Second and Third Generation Biofuels: Towards Sustainability and Competitiveness
Open Access
Numéro
Oil Gas Sci. Technol. – Rev. IFP Energies nouvelles
Volume 68, Numéro 4, July-August 2013
Dossier: Second and Third Generation Biofuels: Towards Sustainability and Competitiveness
Page(s) 725 - 739
DOI https://doi.org/10.2516/ogst/2013115
Publié en ligne 24 septembre 2013
  • Bale C.W., Belisle E., Chartrand P., Decterov S.A., Eriksson G., Hack K., Jung I.-H., Kang Y.-B., Melancon J., Pelton A.D., Robelin C., Petersen S. (2009) FactSage thermochemical software and databases — recent developments, CALPHAD: Computer Coupling Phase Diagrams Thermochem. 33, 295-311. [Google Scholar]
  • Browning G.J., Bryant G.W., Lucas J.A., Wall T.F. (1999) The effect of heterogeneous slag character on viscosity and slag flow in IGCC gasifiers, IFRF Combustion J. 199901, dec-99. [Google Scholar]
  • Christensen K.A., Stenholm M., Livbjerg H. (1998) The formation of submicron aerosol particles, HCl and SO2 in straw-fired boilers, J. Aerosol Sci. 29, 4, 421-444. [Google Scholar]
  • Coda B., Cieplik M.K., de Wild P.J., Kiel J.H.A. (2007) Slagging Behavior of Wood Ash under Entrained-Flow Gasification Conditions, Energy Fuels 21, 6, 3644-3652. [CrossRef] [Google Scholar]
  • Defoort F., Thiery S., Castelli P., Puech A., Grangier B., Ravel S., Guillaudeau J., Verne-Tournon C., Guerrini O., Louvat A. (2010) Advances gained during the ANAPUR Project for inorganic trace measurements in biogas from steam gasification of woody biomass, OB1-2, 18th European Biomass Conference & Exhibition, 3-7 May, Lyon. [Google Scholar]
  • Defoort F., Durruty J.; Dupont C., Guillaudeau J., Bedel L., Ravel S., Campargue M., Da Silva Perez D., Labalette F. (2012) Do all biomasses exhibit the same alkali release behaviour during steam gasification? An answer through a thermodynamic and experimental study, 2D05-3, 20th European Biomass Conference & Exhibition, 18-22 June, Milan. [Google Scholar]
  • De Jong W. (2005) Nitrogen compounds in pressurized fluidized bed gasification of biomass and fossil fuels, PhD Thesis, TU Delft, February 7th. [Google Scholar]
  • Dupont C., Rougé S., Berthelot A., da Silva Perez D., Graffin A., Labalette F., Laboubée C., Mithouard J.C., Pitocchi F. (2010) Bioenergy II: Suitability of Wood Chips and Various Biomass Types for Use in Plant of BtL Production by Gasification, Int. J. Chem. React. Eng. 8, A74. [Google Scholar]
  • Froment K., Defoort F., Bertrand C., Seiler J.L., Berjonneau J., Poirier J. (2013) Thermodynamic equilibrium calculations of the volatilization and condensation of inorganics during wood gasification, Fuel 107, 269-281. [CrossRef] [Google Scholar]
  • Fryda L.E., Panopoulos K.D., Kakaras E. (2008) Agglomeration in fluidised bed gasification of biomass, Powder Technol. 181, 307-320. [CrossRef] [Google Scholar]
  • Gabra M., Nordin A., Qhman M., Kjellstrôm B. (2001) Alkali retention/separation during bagasse gasification: a comparison between a fluidised bed and a cyclone gasifier, Biomass Bioenergy 21, 6, 461-476. [CrossRef] [Google Scholar]
  • Kilpinen P., Hupa M., Leppfilahti J. (1991) Nitrogen chemistry at gasification: A thermodynamic analysis, in: V. Publication (ed.), Abo Akademi University, 30 p. [Google Scholar]
  • Kirnbauer F., Kotic J., Hofbauer H. (201 la) Investigations on inroganic matter in DFB biomass steam-gasification plants in Güssing/Austria and Oberwart/Austria, 19th European Conference and Exhibition (ETA Renewable Energies), 6-10 June, Germany, Berlin. [Google Scholar]
  • Kirnbauer F., Wilk V., Kitzler H., Kern S., Hofbauer H. (201lb) The positive effects of bed material coating on tar reduction in dual fluidized bed gasifier, Fuel 95, 553-562. [CrossRef] [Google Scholar]
  • Knudsen J.N., Jensen P.A., Lin W., Frandsen F.J., Dam-Johansen K. (2004) Sulfur Transformations during Thermal Conversion of Herbaceous Biomass, Energy Fuels 18, 3, 810-819. [CrossRef] [Google Scholar]
  • Liliedahl T., Sjôstrôm K. (1997) Modelling of char-gas reaction kinetics, Fuel 76, 1, 29-37. [CrossRef] [Google Scholar]
  • Mojtahedi W., Kurkela E., Nieminen M. (1990) Release of Sodium and Potassium in the Nb Gasification of Peat, J. Institute Energy 63, 95-100. [Google Scholar]
  • Ohman M., Pommer L., Nordin A. (2005) Bed Agglomeration Characteristics and Mechanisms during Gasification and Combustion of Biomass Fuels, Energy Fuels 19, 4, 1742-1748. [CrossRef] [Google Scholar]
  • Petit M. (2011) Etude du comportement des espèces inorganiques dans une installation de gazéification de la biomasse : condensation des dépôts et des aérosols, INPL Nancy Université, 166. [Google Scholar]
  • Petit M., Froment K., Seiler J.M., Burghoffer P., Patisson P. (2012a) Condensation des vapeurs inorganiques lors du refroidissement du gaz de synthèse de gazéification de la biomasse, Revue Pollution Atmosphérique, N° 213-214. [Google Scholar]
  • Petit M., Froment K., Seiler J.M., Patisson P., Grateau M., Grangier B., Burghoffer P., Defoort F. (2012b) Aerosols condensation understanding and modeling in a biomass gasification facility, 20th European Biomass Conference & Exhibition, 18-22 June, Milan. [Google Scholar]
  • Porbatzki D., Stemmler M., Müller M. (2011) Release of inorganic trace elements during gasification of wood, straw, and miscanthus, Biomass Bioenergy 35, Supplement 1, S79-S86. [CrossRef] [Google Scholar]
  • Seiler J.M., Ganzhorn J. (1997) The viscosity of corium-concrete mixtures, Nuclear Eng. Design 178, 259-268. [CrossRef] [Google Scholar]
  • Turn S.Q., Kinoshita C.M., Ishimura D.M., Zhou J.C. (1998) The fate of inorganic constituents of biomass in fluidized bed gasification, Fuel 77, 135-146. [CrossRef] [Google Scholar]
  • Valin S., Ravel S., Castelli P., Masson E., Dufour A. (2009) Connecting a steam fluidized bed to a high temperature gas reactor to reduce the methane and tar content of biomass syngas, 17th European Biomass Conference & Exhibition, 29 June- 03 July, Hamburg. [Google Scholar]
  • Valin S., Ravel S., Guillaudeau J., Thiery S. (2010) Comprehensive study of the influence of total pressure on products yields in fluidized bed gasification of wood sawdust, Fuel Processing Technol. 91, 1222-1228. [CrossRef] [Google Scholar]
  • Van der Drift A., van Doom J., Vermeulen J.W. (2001) Ten residual biomass fuels for circulating fluidized-bed gasification, Biomass Bioenergy 20, 45-56. [CrossRef] [Google Scholar]
  • Van der Drift A., Boerrigter H., Coda B., Cieplik M.K., Hemmes K. (2004) Entrained flow gaisifcation of Biomass, ECN-C-04-039. [Google Scholar]
  • Vassilev S.V., Baxter D., Andersen L.K., Vassileva C.G., Morgan T.J. (2012) An overview of the organic and inorganic phase composition of biomass, Fuel 94, 1, 1-33. [CrossRef] [Google Scholar]
  • Vassilev S.V., Baxter D., Andersen L.K., Vassileva C.G. (2013) An overview of the composition and application of biomass ash. Part 1: Phase mineral and chemical composition and classification, Fuel 105, 40-76. [Google Scholar]
  • Villot A., Gonthier Y., Gonze E., Bernis A., Ravel S., Grateau M., Guillaudeau J. (2012) Separation of particle from syngas at high temperatures with an electrostatic precipitator, Separation Purification Technol. 92, 181-190. [CrossRef] [Google Scholar]
  • Visser H.J.M., van Lith S.C., Kiel J.H.A. (2008) Biomass ash- bed material interactions leading to agglomeration in FBC, J. Energy Resources Technol. 130, 011801-1. [CrossRef] [Google Scholar]
  • Wei X., Schnell U., Hein K.R.G. (2005) Behaviour of gaseous chlorine and alkali metals during biomass thermal utilisation, Fuel 84, 841-848. [CrossRef] [Google Scholar]
  • Zhou J.C., Masutani S.M., Ishimura D.M., Turn S.Q., Kinoshita C.M. (2000) Release of fuel-bound nitrogen during biomass gasification, Ind. Eng. Chem. Res. 39, 626-634. [CrossRef] [Google Scholar]
  • Werkelin J., Skrifvars B.-J., Zevenhoven M., Holmbom B., Hupa M. (2010) Chemical forms of ash-forming elements in woody biomass fuels, Fuel 89, 2, 481-493. [CrossRef] [Google Scholar]
  • Zevenhoven-Onderwater M., Backman R., Skrifvars B.-J., Hupa M. (2001a) The ash chemistry in fluidised bed gasification of biomass fuels. Part I: predicting the chemistry of melting ashes and ash-bed material interaction, Fuel 80, 10, 1489-1502. [CrossRef] [Google Scholar]
  • Zevenhoven-Onderwater M., Backman R., Skrifvars B.-J., Hupa M., Liliendahl T., Rosén C., Sjdstrbm K., Engvall K., Hallgren A. (2001b) The ash chemistry in fluidised bed gasification of biomass fuels. Part II: Ash behavior prediction versus bench scale agglomeration tests, Fuel 80, 10, 1503-1512. [CrossRef] [Google Scholar]

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