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Aerobic Bioreactor

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... fashion into the waste mass in order to accelerate or enhance biostabilization ... Geotechnical issues associated with rapid decomposition. General ... – PowerPoint PPT presentation

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Title: Aerobic Bioreactor


1
Aerobic Bioreactor
  • CEGR 4143/5143

2
Definition
  • Any permitted Subtitle D landfill or landfill
    cell where liquid and air is injected in a
    controlled fashion into the waste mass in order
    to accelerate or enhance biostabilization of the
    waste (SWANA)

3
The Aerobic Landfill
Leachate
Air
Landfill Cover
Leachate Collection System
4
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5
Aerobic Landfill
6
UNCC Research
7
UNCC Research

8
UNCC Research
  • Objectives
  • Microbiology
  • Determine decay rate constants for saturated
    solid waste based on variations in moisture,
    temperature, O2 consumption
  • Collect and analyze data on oxygen uptake rates,
    methane production, and bacterial concentrations

9
Research Objectives Contd
  • Hydrodynamics
  • Model three-dimensional multi-phase flow patterns
  • Predict necessary spacing of vertical injection
    wells using non-dimensional analysis
  • Geotechnical
  • Settlement and stability characteristics of
    saturated solid waste
  • Geotechnical issues associated with rapid
    decomposition
  • General
  • Develop standard practices, monitoring methods,
    and analysis techniques that can be applied to
    field conditions

10
Future Applications
  • Rowan County, North Carolina
  • 4-acre aerobic landfill cell
  • Design based on UNCC laboratory scale model

11
Aerobic vs. Anaerobic Bioreactors
  • Anaerobic Bioreactor
  • Moisture is added to the waste mass in the form
    of re-circulated leachate and other sources to
    obtain optimal moisture levels. Biodegradation
    occurs in the absence of oxygen and produces
    landfill gas.

12
Aerobic vs. Anaerobic Bioreactors
  • Leachate
  • Anaerobic - create volumes of leachate that
    contain Volatile Organic Compounds (VOCs).
  • Aerobic improve leachate quality by reducing
    BOD and VOCs.

13
Aerobic vs. Anaerobic Bioreactors
  • Landfill Gas
  • Anaerobic produces methane gas (toxic,
    explosive greenhouse gas).
  • Aerobic virtual elimination of methane gas
    (over 90 elimination)

14
Aerobic vs. Anaerobic Bioreactors
  • Odors
  • Anaerobic produce foul odors
  • Aerobic eliminates foul odors produces earthy,
    musty scent.
  • Stabilization
  • Anaerobic 5 to 10 years
  • Aerobic 3 years

15
AEROBIC BIOREACTOROther Potential Benefits
  • Leachate
  • Elimination of the costs associated with offsite
    leachate disposal (100).
  • Improved leachate quality reduces treatment
    surcharges (BOD).
  • Landfill Gas
  • Possible avoidance of Landfill Gas Recovery
    System (35,000/acre) due to reduced methane and
    NMOCs

16
AEROBIC BIOREACTOROther Potential Benefits
  • Revenue
  • Book value of over 15 airspace recovery
  • Environmental Protection
  • Reduction of anaerobic odors. PR costs.
  • Perception as natural process.
  • Addresses unlined landfills with groundwater
    issues

17
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18
Post Degradation Options
  • Fill New Airspace with additional waste
  • Increase revenues
  • Fill New Airspace with Inert Materials
  • Site redevelopment (e.g. commercial/industrial)
  • Compact to meet geotechnical standards
  • Final Closure and Post-Closure
  • Conduct Risk Assessment to obtain data to lessen
    current closure/post-closure requirements.

19
Economic Benefits Single Cell
Assume 2-yr operation, 7-Acre cell 76,000 tons
of waste in place 35 feet in height 35/ton tip
fee.
20
Design/Operational Considerations
21
More information on Aerobic Bioreactors
  • www.bioreactor.org
  • www.aerobiclandfill.com
  • www.wm.com/bio.asp
  • www.yolocounty.org/org/PPW/diwm/bioreactor.htm
  • www.epa.gov/epaoswer/non-hw/muncpl/landfill/biorea
    ctors.htm

22
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