• Title of article

    The ash chemistry in fluidised bed gasification of biomass fuels. Part II: Ash behaviour prediction versus bench scale agglomeration tests

  • Author/Authors

    Zevenhoven-Onderwater، نويسنده , , M and Backman، نويسنده , , R and Skrifvars، نويسنده , , B.-J and Hupa، نويسنده , , M and Liliendahl، نويسنده , , T and Rosén، نويسنده , , C and Sjِstrِm، نويسنده , , K and Engvall، نويسنده , , K and Hallgren، نويسنده , , A، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2001
  • Pages
    10
  • From page
    1503
  • To page
    1512
  • Abstract
    This paper is part II in a series of two. Ash behaviour modelling of the gasification of four biomass fuels is compared with pilot-scale experiments carried out in a pressurised fluidised bed gasifier at the Royal Institute of Technology (KTH) and an atmospheric test rig of Termiska Processer AB (TPS). Experiments were provocative with respect to agglomeration of the bed material. Thus, in the experiments, the agglomeration was allowed to happen without any corrective changes in the operation. scale experiments showed clear defluidisation in five cases. Some degree of bed disturbance or agglomeration occurred in seven out of 13 cases. In nine of these cases, agglomerates were also found in the samples analysed with SEM/EDX analyses. out of 13 cases, the thermodynamic multi-phase multi-component equilibrium calculations were in agreement with SEM/EDX analysis, i.e. predicted formation of agglomerates. In two cases, no or small amounts of agglomerates were predicted, nor were these found with SEM/EDX analysis. In two cases out of 13, the modelling predicted some degree of agglomeration while no agglomerates could be detected with SEM/EDX analysis. However, in these cases, agglomerates were found in the pilot-scale experiments. t is shown that the thermodynamic multi-phase multi-component equilibrium calculations are a useful prediction tool for the formation of agglomerates in (pressurised) fluidised bed gasification of biomass fuels thereby enhancing the understanding of the chemistry involved.
  • Keywords
    BIOMASS , PFBG , Gibbs’ energy minimisation , ash , Agglomeration , Bed sintering
  • Journal title
    Fuel
  • Serial Year
    2001
  • Journal title
    Fuel
  • Record number

    1462300