• Title of article

    Production of a robust nanobiocatalyst for municipal wastewater treatment

  • Author/Authors

    Hommes، نويسنده , , Gregor and Gasser، نويسنده , , Christoph A. and Howald، نويسنده , , Chaim B.C. and Goers، نويسنده , , Roland and Schlosser، نويسنده , , Dietmar and Shahgaldian، نويسنده , , Patrick and Corvini، نويسنده , , Philippe F.-X.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    8
  • From page
    8
  • To page
    15
  • Abstract
    Immobilization is a fundamental method to improve both enzyme activity and stability. In the present work, the process previously described for immobilizing laccase – an enzyme oxidizing phenolic compounds – onto fumed silica was optimized, in order to efficiently produce industrially relevant amounts of a nanobiocatalyst for biological micropollutant elimination, whilst saving 80% of surface modification agent (3-aminopropyl triethoxy silane) and 90% of cross-linker (glutaraldehyde). Minimized losses during preparation and favorable effects of immobilization yielded conjugates with drastically increased enzymatic activity (164% of invested activity). Long-term stability and activity regarding bisphenol A (2,2-bis(4-hydroxyphenyl)propane) removal of the synthesized biocatalyst were assessed under application-relevant conditions. With 81.1 ± 0.4% residual activity after 7 days, stability of conjugates was drastically higher than of free laccase, which showed virtually no activity after 1.5 days. results illustrate the huge potential of fumed silica nanoparticles/laccase-composites for innovative biological wastewater treatment.
  • Keywords
    Phenolic micropollutant , Wastewater treatment , Laccase , Fumed silica nanoparticles , Immobilization
  • Journal title
    Bioresource Technology
  • Serial Year
    2012
  • Journal title
    Bioresource Technology
  • Record number

    1928560