0000000000261785

AUTHOR

Matti Ettala

showing 4 related works from this author

Detailed internal characterisation of two Finnish landfills by waste sampling

2006

The aim of this study was to characterise the internal structure and composition of landfilled waste at two Finnish landfills to provide information for active and post-landfill operations. The two sites, Ammässuo and Kujala, have been in operation for 17 and 48 years, respectively. Waste was sampled (total 68 samples) and analysed for total solids (TS), volatile solids (VS), total Kjeldahl nitrogen (TKN), biological methane potential (BMP) and leaching of organic material (determined as chemical oxygen demand, COD) and ammonium nitrogen (NH(4)-N). The results showed high vertical and horizontal variability, which indicated that both the waste composition and state of degradation varied gre…

Conservation of Natural ResourcesTime FactorsChemical oxygen demandEnvironmental engineeringchemistry.chemical_elementTotal dissolved solidsNitrogenRefuse Disposalchemistry.chemical_compoundAnimal sciencechemistryDry weightAmmoniumComposition (visual arts)Leaching (agriculture)Waste Management and DisposalKjeldahl methodFinlandEnvironmental MonitoringWaste Management
researchProduct

Internal leachate quality in a municipal solid waste landfill: Vertical, horizontal and temporal variation and impacts of leachate recirculation

2008

The aim of this study was to monitor and characterise internal leachate quality at a Finnish municipal solid waste landfill (Lahti, Kujala, in operation for approximately 50 years) to provide information about its horizontal and vertical variation as well as effects of leachate recirculation on leachate quality. The study area (approximately 4h) of the landfill had 14 monitoring wells for leachate quality monitoring over a 2-year period. The leachate was monitored for COD, BOD, TKN, NH4-N, Cl, pH and electric conductivity. The results showed high horizontal and vertical variability in leachate quality between monitoring wells, indicating that age and properties of waste, local conditions (e…

Environmental EngineeringMunicipal solid wasteNitrogenHealth Toxicology and MutagenesisChloridesWater SupplyEnvironmental monitoringEnvironmental ChemistryLeachateWaste Management and DisposalEffluentFinlandgeographyBioreactor landfillgeography.geographical_feature_categoryWaste managementChemistryChemical oxygen demandEnvironmental engineeringPollutionRefuse DisposalOxygenQuaternary Ammonium CompoundsWater qualityWater Pollutants ChemicalEnvironmental MonitoringWater wellJournal of Hazardous Materials
researchProduct

Leachate and gaseous emissions from initial phases of landfilling mechanically and mechanically-biologically treated municipal solid waste residuals.

2008

In this study, the behaviour, and leachate and gaseous emissions during the initial phases of landfilling mechanically (M) and mechanically-biologically (MB) treated municipal solid waste residuals in northern climatic conditions was compared using two landfill lysimeters (112 m3). The results demonstrate that the strong acid phase of M residuals degradation lasts at least 2 years, while in the MB residuals the acid phase lasts only a few months. The SCOD and NH4-N concentrations varied 20-100g/l and 600-1800 mg/l in M leachate and 1-4 g/l and 100-400mg/l in MB leachate, respectively. The leaching of SCOD was approximately 40-fold (24.2 and 0.6 kg/t TS) and leaching of NH4-N approximately 5…

Environmental EngineeringMunicipal solid wasteVolatilisationChromatography GasRenewable Energy Sustainability and the EnvironmentClimateEnvironmental engineeringTemperaturechemistry.chemical_elementBioengineeringGeneral MedicineNitrous oxideHydrogen-Ion ConcentrationNitrogenMethaneRefuse Disposalchemistry.chemical_compoundchemistryEnvironmental chemistryCarbon dioxideLeachateGasesLeaching (agriculture)VolatilizationWaste Management and DisposalBioresource technology
researchProduct

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.)
researchProduct