Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal

Landfill is a source of anthropogenic CH4 and landfill soil cover has been considered as a potential medium to mitigate the gas emissions. This study investigated CH4 oxidation efficiency (MOE) in Jeram Sanitary Landfill soil cover at different moisture contents, organic matter contents and texture...

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Main Author: Zainal, Mohd Suzairiff
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/37331/1/37331.pdf
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spelling my-uitm-ir.373312024-07-15T08:13:27Z Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal 2018 Zainal, Mohd Suzairiff Temperature Physical and theoretical chemistry Landfill is a source of anthropogenic CH4 and landfill soil cover has been considered as a potential medium to mitigate the gas emissions. This study investigated CH4 oxidation efficiency (MOE) in Jeram Sanitary Landfill soil cover at different moisture contents, organic matter contents and texture using column with 80cm soil thickness. MOE of MC15 (15% moisture content) was the highest (82%). Drier MC5 and wetter MC30 (5% and 30% moisture content, respectively) showed lower MOE (54% and 50%, respectively) due to the reduction of microbial activity and limited gas diffusion. The mixture of soil to coir pith at 30:70 (%v/v) (CP70) had enhanced the MOE up to 92%. At 50:50 (CP50) and 70:30 (CP30) of soil to coir pith, the mixtures scored 88 and 86% of MOE, respectively. The incorporation of coir pith to soil cover also enhanced MOE by increasing C:N and permeability of the soil. Meanwhile, sandy clay loam scored the highest MOE with 94% of MOE compared to clay loam (84%) and sandy loam (85%). It was proven that coarser texture of soil cover increased the soil breathability properties to enhance gas transportation along the soil thickness. Via Michaelis-Menten kinetics study, the value of maximum oxidation rate (Vmax) achieved by CP70 was higher (1.50ug g"1 h"1 ) compared to sandy clay loam and MC15 (1.20 and l.Olug g"1 h"1 , respectively). In conclusion, the data indicated modified soil cover with coir pith and sand achieved higher MOE compared to control soil. 2018 Thesis https://ir.uitm.edu.my/id/eprint/37331/ https://ir.uitm.edu.my/id/eprint/37331/1/37331.pdf text en public masters Universiti Teknologi MARA (UiTM) Faculty of Applied Sciences Buyong, Faeiza
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Buyong, Faeiza
topic Temperature
Physical and theoretical chemistry
spellingShingle Temperature
Physical and theoretical chemistry
Zainal, Mohd Suzairiff
Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
description Landfill is a source of anthropogenic CH4 and landfill soil cover has been considered as a potential medium to mitigate the gas emissions. This study investigated CH4 oxidation efficiency (MOE) in Jeram Sanitary Landfill soil cover at different moisture contents, organic matter contents and texture using column with 80cm soil thickness. MOE of MC15 (15% moisture content) was the highest (82%). Drier MC5 and wetter MC30 (5% and 30% moisture content, respectively) showed lower MOE (54% and 50%, respectively) due to the reduction of microbial activity and limited gas diffusion. The mixture of soil to coir pith at 30:70 (%v/v) (CP70) had enhanced the MOE up to 92%. At 50:50 (CP50) and 70:30 (CP30) of soil to coir pith, the mixtures scored 88 and 86% of MOE, respectively. The incorporation of coir pith to soil cover also enhanced MOE by increasing C:N and permeability of the soil. Meanwhile, sandy clay loam scored the highest MOE with 94% of MOE compared to clay loam (84%) and sandy loam (85%). It was proven that coarser texture of soil cover increased the soil breathability properties to enhance gas transportation along the soil thickness. Via Michaelis-Menten kinetics study, the value of maximum oxidation rate (Vmax) achieved by CP70 was higher (1.50ug g"1 h"1 ) compared to sandy clay loam and MC15 (1.20 and l.Olug g"1 h"1 , respectively). In conclusion, the data indicated modified soil cover with coir pith and sand achieved higher MOE compared to control soil.
format Thesis
qualification_level Master's degree
author Zainal, Mohd Suzairiff
author_facet Zainal, Mohd Suzairiff
author_sort Zainal, Mohd Suzairiff
title Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
title_short Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
title_full Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
title_fullStr Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
title_full_unstemmed Evaluation of methane oxidation efficiency in selected landfill soil cover / Mohd Suzairiff Zainal
title_sort evaluation of methane oxidation efficiency in selected landfill soil cover / mohd suzairiff zainal
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Applied Sciences
publishDate 2018
url https://ir.uitm.edu.my/id/eprint/37331/1/37331.pdf
_version_ 1804889631002460160