Search results for "Landfill ga"

showing 7 items of 17 documents

Biogas from municipal solid waste landfills: A simplified mathematical model

2018

AbstractMunicipal solid waste (MSW) landfills now represent one of the most important issues related to the waste management cycle. Knowledge of biogas production is a key aspect for the proper exploitation of this energy source, even in the post-closure period. In the present study, a simple mathematical model was proposed for the simulation of biogas production. The model is based on first-order biodegradation kinetics and also takes into account the temperature variation in time and depth as well as landfill settlement. The model was applied to an operating landfill located in Sicily, in Italy, and the first results obtained are promising. Indeed, the results showed a good fit between me…

Municipal solid wasteEnvironmental EngineeringWaste Disposal Facilitie020209 energyBiogas modelling02 engineering and technologySolid WasteBiogasWaste ManagementBiofuelLandfill lifetime0202 electrical engineering electronic engineering information engineeringDuration (project management)Landfill gaSicilyWater Science and TechnologyWaste managementSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSettlement (structural)Flux chamberModels TheoreticalRefuse DisposalBiodegradation kineticsWaste Disposal FacilitiesLandfill gasBiodegradation EnvironmentalBiofuelBiofuelsEnvironmental scienceEnergy source
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Mathematical modelling of biogas from municipal solid waste landfil

2016

Sanitary landfills for municipal solid wastes can be considered as large biological reactors where the organic fraction of municipal solid waste undergoes anaerobic digestion producing gas and liquid emissions. Leachate production from municipal sanitary landfills is currently recognized as a major environmental burden associated with municipal solid waste management and it may be responsible for local pollution of groundwater and soil. Moreover, the fate of the organic compounds within the landfill body is of primary importance since it directly influences the production of landfill gas. The aim of the paper is to propose an integrated mathematical model able to simulate, on one hand, the …

Settore ICAR/03 - Ingegneria Sanitaria-Ambientalemoisture distributionmathematical modellingmathematical modelling; landfill gas; moisture distribution; vertical leachate flowlandfill gavertical leachate flow
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Methane oxidation at a surface-sealed boreal landfill.

2009

Abstract Methane oxidation was studied at a closed boreal landfill (area 3.9 ha, amount of deposited waste 200,000 tonnes) equipped with a passive gas collection and distribution system and a methane oxidative top soil cover integrated in a European Union landfill directive-compliant, multilayer final cover. Gas wells and distribution pipes with valves were installed to direct landfill gas through the water impermeable layer into the top soil cover. Mean methane emissions at the 25 measuring points at four measurement times (October 2005–June 2006) were 0.86–6.2 m 3  ha −1  h −1 . Conservative estimates indicated that at least 25% of the methane flux entering the soil cover at the measuring…

TopsoilEnvironmental engineeringCarbon DioxideMethanechemistry.chemical_compoundLandfill gasFlux (metallurgy)chemistryWaste ManagementAnaerobic oxidation of methanemedia_common.cataloged_instanceEnvironmental scienceRegression AnalysisEuropean unionTonneWaste Management and DisposalMethaneOxidation-ReductionFinal covermedia_commonWaste management (New York, N.Y.)
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Trace compounds of biogas from different biogas production plants

2007

Biogas composition and variation in three different biogas production plants were studied to provide information pertaining to its potential use as biofuel. Methane, carbon dioxide, oxygen, nitrogen, volatile organic compounds (VOCs) and sulphur compounds were measured in samples of biogases from a landfill, sewage treatment plant sludge digester and farm biogas plant. Methane content ranged from 48% to 65%, carbon dioxide from 36% to 41% and nitrogen from <1% to 17%. Oxygen content in all three gases was <1%. The highest methane content occurred in the gas from the sewage digester while the lowest methane and highest nitrogen contents were found in the landfill gas during winter. The amoun…

business.industryMechanical EngineeringSewageBuilding and ConstructionPollutionIndustrial and Manufacturing EngineeringMethanechemistry.chemical_compoundWaste treatmentGeneral EnergyLandfill gaschemistryBiogasBiofuelEnvironmental chemistryCarbon dioxideSewage treatmentElectrical and Electronic EngineeringbusinessCivil and Structural EngineeringEnergy
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The analysis of methods for measurement of methane oxidation in landfills

2003

Landfills and dumps are important sources of atmospheric methane. There is no generally accepted estimate of the influence of methane oxidation on landfill methane emissions. The present work aimed to analyse different methods for the investigation of methane emission and oxidation in methane-producing environments (wetlands, landfills, sludge checks), and to develop the precise procedure for the landfills. The combination of geochemical and microbiological methods to estimate and monitor the oxidation and emission of methane in landfills during different seasons is proposed. It includes the measurements, both on the surface and at different depths (up to 1 m) of landfill ground of the foll…

education.field_of_studyEnvironmental EngineeringMoistureAtmospheric methanePopulationEnvironmental engineeringSubstrate (marine biology)Methanechemistry.chemical_compoundLandfill gaschemistryEnvironmental chemistryAnaerobic oxidation of methaneCarbon dioxideeducationWater Science and TechnologyWater Science and Technology
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Biogas composition and upgrading to biomethane

2009

Saija Rasin tutkimus osoittaa, että jätteistä tai energiakasveista tuotettua biokaasua voidaan hyödyntää sähkön ja lämmön tuotantoon. Biokaasua voidaan käyttää jalostettuna myös korkealaatuista polttoainetta vaativissa kohteissa, kuten ajoneuvoissa ja polttokennoissa. Fossiilisten polttoaineiden korvaaminen uusiutuvilla polttoaineilla, esimerkiksi biokaasulla, vähentää merkittävästi kasvihuone- ja muita haitallisia päästöjä. Biokaasun pääkomponentit ovat metaani ja hiilidioksidi, ja lisäksi se voi sisältää pieniä pitoisuuksia energiakäyttöä haittaavia yhdisteitä, joiden määrä ja laatu vaihtelevat. Nämä yhdisteet voivat esimerkiksi estää koko teknologian käytön tai lyhentää laitteistojen huo…

gas upgradingbiokaasukoostumuskaatopaikkakaasumethanepuhdistusvehicle fuelmetaaniliikennepolttoaineetbiogastrace compoundslandfill gasbiopolttoaineetepäpuhtaudet
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MODELLING BIOGAS GENERATION AND RELEASE FROM MUNICIPAL SOLID WASTE LANDFILLS

2015

MSW sanitary landfills represent nowadays one of the most important issue related to the waste management cycle. In particular, knowledge about biogas production is a key aspect for a proper exploitation of this energy source, even in the after-care phase. In the present study, a simple mathematical model was proposed for the simulation of biogas production. The model is based on 1st order biodegradation kinetic and takes also into account the temperature variation in time and depth and the landfill settlement. The model was applied to a real landfill located in Sicily (ITALY) and its simulation result was compared with experimental data (volumes of biogas collected by the recovery system a…

landfill lifetimebiogas modellingSettore ICAR/03 - Ingegneria Sanitaria-Ambientalelandfill ga
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