Co-landfilling of pretreated waste: Disposal and management strategies at lab-scale

The present paper deals with the possible advantages that can be obtained by co-landfilling of municipal solid waste organic fraction (MSWOF) and bottom ash (BA) from the incineration of municipal solid waste. In particular, the aim of the research hereby presented is to check the effect exerted by...

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Published inJournal of hazardous materials Vol. 147; no. 1; pp. 37 - 47
Main Authors Boni, Maria Rosaria, Leoni, Simone, Sbaffoni, Silvia
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 17.08.2007
Elsevier
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Abstract The present paper deals with the possible advantages that can be obtained by co-landfilling of municipal solid waste organic fraction (MSWOF) and bottom ash (BA) from the incineration of municipal solid waste. In particular, the aim of the research hereby presented is to check the effect exerted by different disposal (mixed or layered) and management strategies (anaerobic or semiaerobic conditions) for landfills in which MSWOF and BA are co-disposed. Three lab-scale reactors were set-up: the reactor A with mixed BA and MSWOF in anaerobic conditions, the reactor B with mixed BA and MSWOF in semiaerobic conditions, the reactor C with layered BA and MSWOF in anaerobic conditions. The results obtained showed that the aeration at the beginning of the experimental period for about 60 days led to a more rapid biodegradation of the organic matter and to an improved leachate quality in terms of both organic load and nitrogen content. Also a significant increase in the settling rate was observed at the end of the aeration phase. Therefore, the aerobic management can be advised as the most available strategy providing a more rapid biological and mechanical stabilization of the bulk waste. Otherwise, the disposal strategy did not exert any significant effect on the leachate characteristics; however, the layered configuration may be adopted in order to accelerate the main settlements.
AbstractList The present paper deals with the possible advantages that can be obtained by co-landfilling of municipal solid waste organic fraction (MSWOF) and bottom ash (BA) from the incineration of municipal solid waste. In particular, the aim of the research hereby presented is to check the effect exerted by different disposal (mixed or layered) and management strategies (anaerobic or semiaerobic conditions) for landfills in which MSWOF and BA are co-disposed. Three lab-scale reactors were set-up: the reactor A with mixed BA and MSWOF in anaerobic conditions, the reactor B with mixed BA and MSWOF in semiaerobic conditions, the reactor C with layered BA and MSWOF in anaerobic conditions. The results obtained showed that the aeration at the beginning of the experimental period for about 60 days led to a more rapid biodegradation of the organic matter and to an improved leachate quality in terms of both organic load and nitrogen content. Also a significant increase in the settling rate was observed at the end of the aeration phase. Therefore, the aerobic management can be advised as the most available strategy providing a more rapid biological and mechanical stabilization of the bulk waste. Otherwise, the disposal strategy did not exert any significant effect on the leachate characteristics; however, the layered configuration may be adopted in order to accelerate the main settlements.
Author Boni, Maria Rosaria
Sbaffoni, Silvia
Leoni, Simone
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Issue 1
Keywords Pretreated waste
Aerated landfill
Co-disposal
Landfill
Cinders
Waste dumping
Organic matter
Heat treatment
Stabilization
Waste treatment
Urban waste
Aeration
Anaerobe
Reactor
Biodegradation
Pollutant behavior
Aerobe
Nitrogen
Waste disposal
Sedimentation
Incineration
Surveillance
Organic loading
Solid waste
Leachate
Language English
License CC BY 4.0
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Snippet The present paper deals with the possible advantages that can be obtained by co-landfilling of municipal solid waste organic fraction (MSWOF) and bottom ash...
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SubjectTerms Aerated landfill
Anaerobiosis
Applied sciences
Biodegradation, Environmental
Bioreactors
Chemical engineering
Co-disposal
Exact sciences and technology
General treatment and storage processes
Landfill
Liquid-liquid and fluid-solid mechanical separations
Oxygen
Pollution
Pretreated waste
Reactors
Refuse Disposal - methods
Settling
Urban and domestic wastes
Waste Management - methods
Wastes
Title Co-landfilling of pretreated waste: Disposal and management strategies at lab-scale
URI https://dx.doi.org/10.1016/j.jhazmat.2006.12.049
https://www.ncbi.nlm.nih.gov/pubmed/17222967
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