• Title of article

    Characterization of short chain fatty acid microcapsules produced by spray drying

  • Author/Authors

    Teixeira، نويسنده , , Maria Inês and Andrade، نويسنده , , Leonardo R. and Farina، نويسنده , , Marcos and Rocha-Leمo، نويسنده , , Maria Helena M.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    6
  • From page
    653
  • To page
    658
  • Abstract
    Microcapsules containing short chain fatty acids (SCFA) were produced by spray drying technique using different proportions of gum arabic and maltodextrin as wall materials. Proportions of 5% and 10% of gum arabic and maltodextrin isolated, and a mixture of 5% of maltodextrin and 5% of gum arabic were added to samples of fermented permeate containing SCFA, and spray dried. The microstructure of microcapsules was studied by scanning electron microscopy (SEM) and the size distribution was obtained by laser diffraction. SEM observations showed that the microcapsules structures were affected by type and proportion of wall material tested. Most of the microcapsules containing gum arabic as wall material had surface dents or invaginations. Microcapsules containing maltodextrin were spherical with few surface dents and some of them had pores. The larger microcapsule sizes were observed in those containing maltodextrin. Our results show that microstructure and size of microcapsules are affected by type and proportion of biomaterial used. The samples containing 5% of maltodextrin and the mixture of 5% of gum arabic with 5% of maltodextrin presented smooth surfaces and homogenous size distributions. The corresponding microcapsules are considered optimal to food industrial uses due to the flowability property. Besides, these capsules were found to present a homogenous distribution of diameters, which may give a homogenous flavor distribution to the food products.
  • Keywords
    maltodextrin , SCFA microcapsules , Scanning electron microscopy , gum arabic , Spray drying
  • Journal title
    Materials Science and Engineering C
  • Serial Year
    2004
  • Journal title
    Materials Science and Engineering C
  • Record number

    2096055