• Title of article

    Optimizing the Operation of Straight-Grate Iron-Ore Pellet Induration Systems Using Process Models

  • Author/Authors

    CROSS، MARK نويسنده , , BLOT، PHILIPPE نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1999
  • Pages
    -802
  • From page
    803
  • To page
    0
  • Abstract
    Mathematical models of straight-grate pellet induration processes have been developed and carefully validated by a number of workers over the past two decades. However, the subsequent exploitation of these models in process optimization is less clear, but obviously requires a sound understanding of how the key factors control the operation. In this article, we show how a thermokinetic model of pellet induration, validated against operating data from one of the Iron Ore Company of Canada (IOCC) lines in Canada, can be exploited in process optimization from the perspective of fuel efficiency, production rate, and product quality. Most existing processes are restricted in the options available for process optimization. Here, we review the role of each of the drying (D), preheating (PH), firing (F), after-firing (AF), and cooling (C) phases of the induration process. We then use the induration process model to evaluate whether the first drying zone is best to use on the up- or downdraft gas-flow stream, and we optimize the on-gas temperature profile in the hood of the PH, F, and AF zones, to reduce the burner fuel by at least 10 pct over the long term. Finally, we consider how efficient and flexible the process could be if some of the structural constraints were removed (i.e., addressed at the design stage). The analysis suggests it should be possible to reduce the burner fuel lead by 35 pet, easily increase production by 5 + pct, and improve pellet quality.
  • Keywords
    Circlilarity , Form error , Min-Max , Roundness , tolerance
  • Journal title
    METALLURGICAL & MATERIAL TRANSACTIONS (B)
  • Serial Year
    1999
  • Journal title
    METALLURGICAL & MATERIAL TRANSACTIONS (B)
  • Record number

    12761