• Title of article

    Separation of ulexite from colemanite by calcination

  • Author/Authors

    ?ener، نويسنده , , S and ?zbayo?lu، نويسنده , , G، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1995
  • Pages
    8
  • From page
    697
  • To page
    704
  • Abstract
    Calcination properties and related structural changes of ulexite (NaCaB5O9·8H2O) and colemanite (Ca2B6O11·5H2O) have been investigated and possibilities of separation of ulexite from colemanite have been examined by utilizing different structural changes during calcination. hermal analyses of both ulexite and colemanite were determined. The maximum dehydration peak of ulexite was obtained at around 190°C. The structural changes were investigated by XRD and mineralogical examinations. It was observed that ulexite lost its crystal water gradually forming more porous and friable structure up to around 300°C, above that it gained hardness and compacted during calcination. On the other hand, colemanite lost its crystal water suddenly and was decrepitated at 390°C. esult of calcination tests, two alternating methods were proposed for the separation of ulexite from colemanite by adjusting the calcination temperature. first method, a ulexite and colemanite mixture was calcined at 450°C for 30 minutes, during which ulexite gained hardness while colemanite was decrepitated. The calcined mixture was screened, producing ulexite concentrate as oversize with 96.63% B2O3 recovery. second method, ulexite and colemanite mixture was calcined at 240°C for 60 minutes, during which ulexite became friable while colemanite kept its original crystal structure so that it was separated from colemanite by semi-autogenous grinding, and then screening. The ulexite concentrate was obtained as undersize product with 98.43% B2O3 recovery.
  • Keywords
    Ulexite , Boron Minerals , Colemanite , CALCINATION , Decrepitation
  • Journal title
    Minerals Engineering
  • Serial Year
    1995
  • Journal title
    Minerals Engineering
  • Record number

    2272317