• Title of article

    Assessment of N2O emission from a photobioreactor treating ammonia-rich swine wastewater digestate

  • Author/Authors

    M.M. and Mezzari، نويسنده , , Melissa P. and da Silva، نويسنده , , Mلrcio L.B. and Nicoloso، نويسنده , , Rodrigo S. and Ibelli، نويسنده , , Adriana M.G. and Bortoli، نويسنده , , Marcelo and Viancelli، نويسنده , , Aline and Soares، نويسنده , , Hugo M.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    6
  • From page
    327
  • To page
    332
  • Abstract
    This study investigated the interactions between naturally occurring bacteria and the microalgae Chlorella vulgaris within a lab scale photobioreactor treating ammonia-rich swine wastewater digestate effluent. Nitrification and denitrification were assessed by targeting ammonia monoxygenases (amoA), nitrate (narG), nitrite (nirS), nitric oxide (norB) and nitrous oxide (nosZ) reductases genes. Oxygen produced from microalgae photosynthesis stimulated nitrification. Under limiting carbon availability (i.e., <1.44 for mg TOC/mg NO2-N and 1.72 for mg TOC/mg NO3–N), incomplete denitrification led to accumulation of NO2 and NO3. Significant N2O emission (up to 118 μg N2O–N) was linked to NO2 metabolism in Chlorella. The addition of acetate as external carbon source recovered heterotrophic denitrification activity suppressing N2O emission. Effluent methane concentrations trapped within photobioreactor was removed concomitantly with ammonia. Overall, closed photobioreactors can be built to effectively remove nitrogen and mitigate simultaneously greenhouse gases emissions that would occur otherwise in open microalgae-based wastewater treatment systems.
  • Keywords
    Ammonia , greenhouse gases , Microalgae , Real-Time PCR , swine wastewater
  • Journal title
    Bioresource Technology
  • Serial Year
    2013
  • Journal title
    Bioresource Technology
  • Record number

    1934684