Optimization of parameters for methane oxidation in landfill cover compost materials

dc.contributor.authorNiemczyk, Monika Joanna
dc.contributor.examiningcommitteeLozecznik, Stan (Civil Engineering) Sparling, Richard (Microbiology)en_US
dc.contributor.supervisorYuan, Qiuyan (Civil Engineering) Oleszkiewicz, Jan (Civil Engineering)en_US
dc.date.accessioned2018-09-17T19:30:04Z
dc.date.available2018-09-17T19:30:04Z
dc.date.issued2018-08-30en_US
dc.date.submitted2018-08-31T02:08:01Zen
dc.degree.disciplineCivil Engineeringen_US
dc.degree.levelMaster of Science (M.Sc.)en_US
dc.description.abstractThis research evaluated the efficacy of two compost materials, yard and leaf waste compost (YLWC) and biosolids compost (BSC) at oxidizing methane (CH4) in a series of laboratory experiments. Initial batch incubation of the YLWC under a 20% CH4-in-air headspace yielded higher CH4 oxidation rates than were observed in the same YLWC tested one year prior (higher raBOD), due to less competition for oxygen with heterotrophic bacteria. Very little CH4 oxidation was observed in the BSC, with moisture content (MC), heavy metals, and methanotrophic inoculum determined to not be limiting variables. Long-term batch tests (>100 days) indicated the highest CH4 oxidation rates in 1:1 and 1:4 (YLWC:BSC) mixing ratios (360-380 µmol g(d.w.)-1 d-1). Column tests found that a 1:4 mixing ratio at a MC of 40% ww (with addition of a methanotroph-enriched compost extract) has the potential to remove a significant portion of the CH4 flowing through a landfill biocover.en_US
dc.description.noteOctober 2018en_US
dc.identifier.urihttp://hdl.handle.net/1993/33417
dc.language.isoengen_US
dc.rightsopen accessen_US
dc.subjectLandfillsen_US
dc.subjectLandfill coversen_US
dc.subjectBiocoversen_US
dc.subjectMethane oxidationen_US
dc.subjectMethanotrophsen_US
dc.titleOptimization of parameters for methane oxidation in landfill cover compost materialsen_US
dc.typemaster thesisen_US
local.subject.manitobayesen_US
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