• Title of article

    Chemical properties of anaerobic digestates affecting C and N dynamics in amended soils

  • Author/Authors

    Jose Antonio Alburquerque، نويسنده , , Carlos de la Fuente، نويسنده , , Mar?a Pilar Bernal، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    8
  • From page
    15
  • To page
    22
  • Abstract
    The optimisation of digestate recycling as fertilisers, based on both environmental and agricultural criteria, requires an evaluation of the effects on C and N dynamics in soil. In the present paper, six digestates from several anaerobic co-digestion experiments, using pig or cattle slurry as the main substrate, were evaluated in short-term incubations in soil. Digestate properties such as dissolved organic-C (DOC), biochemical oxygen demand (BOD) and digestate organic-C mineralised in the soil during the first 7 days represented properly the digestate biodegradability. These, together with their ratios with respect to the total nitrogen (TN) concentration in the digestate, were reliable parameters with respect to defining the C and N dynamics in the soil and hence the N-fertiliser potential of the digested materials. Therefore, highly biodegradable digested materials, represented in the present study by digestates from cattle slurry–glycerine mixtures were not suitable for agricultural use as they caused a high CO2–C production and led to N-immobilisation and/or denitrification after their application to soil. Contrastingly, for less biodegradable digested materials (BOD5 d < 6.0 g O2 L−1 fresh weight, DOC < 5.5 g L−1 fresh weight and DOC/TN < 1.5), less CO2–C was evolved and ammonium was rapidly nitrified in soil—being an available N source for crops.
  • Keywords
    Nitrogen immobilisation , Anaerobic digestion , Organic matter mineralisation , Animal slurries , Biodegradability
  • Journal title
    Agriculture Ecosystems and Environment
  • Serial Year
    2012
  • Journal title
    Agriculture Ecosystems and Environment
  • Record number

    1289284