Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills

dc.contributor.advisorOdiyo, J. O.
dc.contributor.advisorEdokpayi, J. N.
dc.contributor.authorNjoku, Prince Obinna
dc.date2018
dc.date.accessioned2018-10-11T09:36:07Z
dc.date.available2018-10-11T09:36:07Z
dc.date.issued2018-09-21
dc.descriptionMENVSC
dc.descriptionDepartment of Ecology and Resource Management
dc.description.abstractOver the years it has been observed that the solid waste sector has been an increasingly major contributor to the amount of Greenhouse gases (GHGs) in the atmosphere. To some extent a great chunk of these GHGs in the atmosphere is from Landfill gas (LFG). This study employs two theoretical models (LandGEM and Afvalzorg models) to estimate the amount of LFG emitted from Weltervenden and Thohoyandou landfill sites located in Limpopo province of South Africa. Furthermore, the study investigated the appropriate technique of the LFG utilisation as a source of electricity and the number of households using electricity. LFGcost model was used to estimate the cost and benefits related to the implementation of a LFG utilisation technology. Also, the possible health and environmental impacts of the landfill emissions on the people living closer to the landfill site were determined. The LandGEM model’s simulation concludes that CH4 and CO2 peaked in the year 2020 with values of 3.323 × 103 Mg/year and 9.118 × 103 Mg/year, respectively, for the Thohoyandou landfill. Results from the Afvalzorg model indicate that the CH4 peaked in the year 2020 with value of 3.501 × 103 Mg/year. Meanwhile the total emission of CH4 from 2005-2040 by the LandGEM and Afvalzorg models are 66200 Mg/year and 69768 Mg/year, respectively. However, for the Weltervenden landfill, the total LFG peaked in the year 2023 while the CH4 peak at 4061 Mg/year and 3128 Mg/year for LandGEM and Afvalzorg models, respectively. Furthermore, results from the cost analysis and benefits for the implementation of a LFG utilisation technology in both landfills show that the implementation of such a utilisation technology will be economically feasible considering the sale of t CO2 equivalent in the carbon market. However, without considering the sales of t CO2 equivalent, not all the LFG engines are economically feasible for both landfills. This study also shows that the residents living closer to the Thohoyandou landfill are at a higher risk of environmental pollution and could suffer negative impacts from the landfill than residents living far from the landfill site. However, the Weltervenden landfill did not have lots of communities living closer to the landfill and therefore it was not included in this study.en_US
dc.description.sponsorshipNRFen_US
dc.format.extent1 online resource (xii, 187 leaves : color illustrations, color maps)
dc.identifier.apacitationNjoku, P. O. (2018). <i>Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills</i>. (). . Retrieved from http://hdl.handle.net/11602/1249en_ZA
dc.identifier.chicagocitationNjoku, Prince Obinna. <i>"Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills."</i> ., , 2018. http://hdl.handle.net/11602/1249en_ZA
dc.identifier.citationNjoku, Prince Obinna (2018) Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills, University of Venda, Thohoyandou, <http://hdl.handle.net/11602/1249>
dc.identifier.ris TY - Dissertation AU - Njoku, Prince Obinna AB - Over the years it has been observed that the solid waste sector has been an increasingly major contributor to the amount of Greenhouse gases (GHGs) in the atmosphere. To some extent a great chunk of these GHGs in the atmosphere is from Landfill gas (LFG). This study employs two theoretical models (LandGEM and Afvalzorg models) to estimate the amount of LFG emitted from Weltervenden and Thohoyandou landfill sites located in Limpopo province of South Africa. Furthermore, the study investigated the appropriate technique of the LFG utilisation as a source of electricity and the number of households using electricity. LFGcost model was used to estimate the cost and benefits related to the implementation of a LFG utilisation technology. Also, the possible health and environmental impacts of the landfill emissions on the people living closer to the landfill site were determined. The LandGEM model’s simulation concludes that CH4 and CO2 peaked in the year 2020 with values of 3.323 × 103 Mg/year and 9.118 × 103 Mg/year, respectively, for the Thohoyandou landfill. Results from the Afvalzorg model indicate that the CH4 peaked in the year 2020 with value of 3.501 × 103 Mg/year. Meanwhile the total emission of CH4 from 2005-2040 by the LandGEM and Afvalzorg models are 66200 Mg/year and 69768 Mg/year, respectively. However, for the Weltervenden landfill, the total LFG peaked in the year 2023 while the CH4 peak at 4061 Mg/year and 3128 Mg/year for LandGEM and Afvalzorg models, respectively. Furthermore, results from the cost analysis and benefits for the implementation of a LFG utilisation technology in both landfills show that the implementation of such a utilisation technology will be economically feasible considering the sale of t CO2 equivalent in the carbon market. However, without considering the sales of t CO2 equivalent, not all the LFG engines are economically feasible for both landfills. This study also shows that the residents living closer to the Thohoyandou landfill are at a higher risk of environmental pollution and could suffer negative impacts from the landfill than residents living far from the landfill site. However, the Weltervenden landfill did not have lots of communities living closer to the landfill and therefore it was not included in this study. DA - 2018-09-21 DB - ResearchSpace DP - Univen KW - Estimation KW - Emissions KW - Gases KW - Landfill site KW - LandGEM KW - Afvalzorg LK - https://univendspace.univen.ac.za PY - 2018 T1 - Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills TI - Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills UR - http://hdl.handle.net/11602/1249 ER - en_ZA
dc.identifier.urihttp://hdl.handle.net/11602/1249
dc.identifier.vancouvercitationNjoku PO. Estimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfills. []. , 2018 [cited yyyy month dd]. Available from: http://hdl.handle.net/11602/1249en_ZA
dc.language.isoenen_US
dc.rightsUniversity of Venda
dc.subjectEstimationen_US
dc.subjectUCTDen_ZA
dc.subjectGasesen_US
dc.subjectLandfill siteen_US
dc.subjectLandGEMen_US
dc.subjectAfvalzorgen_US
dc.subject.ddc363.738740968257
dc.subject.lcshGases -- South Africa -- Limpopo
dc.subject.lcshWaste gases -- South Africa -- Limpopo
dc.subject.lcshGreenhouse gases -- South Africa -- Limpopo
dc.subject.lcshGreenhouses -- Climate -- South Africa -- Limpopo
dc.subject.lcshPollution -- South Africa -- Limpopo
dc.subject.lcshPollution -- Environmental aspects -- South Africa -- Limpopo
dc.subject.lcshClimate changes -- South Africa -- Limpopo
dc.subject.lcshLandfill gases -- South Africa -- Limpopo
dc.titleEstimation of the emissions of gases from a two landfill sites using the LandGEM and Afvalzorg models: Case study of the Weltervenden (Polokwane) and Thohoyandou landfillsen_US
dc.typeDissertationen_US

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