• Title of article

    Ultra dispersed particles of Fe(III) compounds in the strongly basic crosslinked ionic polymer-precursors for new sorbents and catalysts

  • Author/Authors

    Vasile Gutsanu، نويسنده , , Cristina Schitco، نويسنده , , Gabriela Lisa، نويسنده , , Constantin Turta، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2011
  • Pages
    9
  • From page
    853
  • To page
    861
  • Abstract
    The Mössbauer spectroscopy and SEM investigation shows that crosslinked ionic polymers containing strongly basic functional groups adsorb Fe(III)-containing cations from sulphate solution through the formation in the polymer phase of high dispersed particles of jarosite mineral type compounds. Using different procedures the particles sizes and morphology, their repartition on the surface and in the volume of the polymer granule, the composition of the “polymer-inorganic compound” structural units were modified that is important for sorbents and catalysts obtaining. On heating in water medium in a boiling water bath, a part of the jarosite type compounds in the polymer phase is converted into ultra fine β-FeOOH particles in superparamagnetic state and the rest, in relatively massive and magnetically ordered β-FeOOH particles. The higher is the content of the Fe(III) in the polymer phase, the shorter is the duration of heating in water for the appearance of relatively massive particles of β-FeOOH. The particles of the jarosite type compounds and of the β-FeOOH are formed both on the surface and in the volume of the polymer granule. Upon heating in water, a part of the Fe(III)-containing particles have migrated from the volume of the polymer granule to the surface. Thermogravimetric investigation (in an N2 atmosphere) shows that on heating of the Fe(III)-containing polymer sample up to 900 °C, complicated processes take place.
  • Keywords
    Polymers , Inorganic compounds , electron microscopy , Differential thermal analysis
  • Journal title
    Materials Chemistry and Physics
  • Serial Year
    2011
  • Journal title
    Materials Chemistry and Physics
  • Record number

    1066496