Skip to main navigation Skip to search Skip to main content

In-situ full-scale aeration of a landfill with low organic content in Denmark

  • NIRAS A/S

Research output: Contribution to journalJournal articleResearchpeer-review

23 Downloads (Orbit)

Abstract

Landfill aeration was investigated for accelerating the degradation of remaining organic content at AV Miljø for reducing the aftercare period. With a flow rate of 70 m3/h, and later 50 m3/h, increased aerobic microbial activity was observed after the initial displacement of existing landfill gas (LFG). On average, the temperature rose by 10 °C in the waste body, and the settlement rate went from 0.6 to 10 cm/year after 25 months of aeration. Gas emission measurements, using different methods to improve spatial and temporal resolution, including flux chambers, surface screening, eddy covariance (EC), and tracer-gas dispersion measurements, also pointed to increased biological activity, proving that aeration promoted the degradation of recalcitrant organic content at the site. In the LFG, CH4 was reduced by about 80 %, from 43.9 %vol to 8.4 %vol, after 21 months of aeration, and CO2 from 29.1 %vol to 17.3 %vol resulting in a change in the CH4-to-CO2 ratio from 1.5 to 0.5. EC measurements of the CO2 flux recorded a difference of ∼50 g CO2/(m2·d) between summer emissions with and without aeration, confirming the increased activity of aerobic microbial communities. In addition, leachate quality improved during the first six months of aeration, with a reduction in NH4+/NH3-N concentration from 97.3 mg N/L to 56.1 mg N/L. However, an unusually high production of leachate volume resulted in a heightened concentration of various parameters, including PFAS, thereby masking the effect of aeration. Further research is therefore needed to elucidate the long-term effect of aeration on leachate quality.
Original languageEnglish
Article number115523
JournalWaste Management
Volume218
Number of pages13
ISSN0956-053X
DOIs
Publication statusPublished - 2026

Keywords

  • Waste stabilisation
  • Aftercare
  • Methane emissions
  • Leachate quality
  • Settlements
  • PFAS
  • BPA
  • Contaminants of emerging concern (CEC)

Fingerprint

Dive into the research topics of 'In-situ full-scale aeration of a landfill with low organic content in Denmark'. Together they form a unique fingerprint.

Cite this