Simulation of gas transport in a landfill with layered new and old municipal solid waste

Abstract Average biodegradation rate of newly filled municipal solid waste (MSW) in landfills is relatively fast, and the landfill gas produced by the new MSW biodegradation can cause great variations in gas pressure. To predict the gas pressure distribution in the MSW layer, a one-dimensional gas t...

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Main Authors: Tao Zhang, Jianyong Shi, Xun Wu, Hai Lin, Xiulei Li
Format: Article
Language:English
Published: Nature Publishing Group 2021-05-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-88858-5
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spelling doaj-374ff16cf44546c1966d2f8cdf3d87ce2021-05-09T11:32:53ZengNature Publishing GroupScientific Reports2045-23222021-05-0111111310.1038/s41598-021-88858-5Simulation of gas transport in a landfill with layered new and old municipal solid wasteTao Zhang0Jianyong Shi1Xun Wu2Hai Lin3Xiulei Li4School of Civil Engineering and Architecture, Nanchang Hangkong UniversityGeotechnical Engineering Research Institute, Hohai UniversityGeotechnical Engineering Research Institute, Hohai UniversitySchool of Civil Engineering and Architecture, Nanchang UniversityCollege of Hohai, Chongqing Jiaotong UniversityAbstract Average biodegradation rate of newly filled municipal solid waste (MSW) in landfills is relatively fast, and the landfill gas produced by the new MSW biodegradation can cause great variations in gas pressure. To predict the gas pressure distribution in the MSW layer, a one-dimensional gas transport model is established in this study. The following factors are considered in this model: (1) the variation of gas permeability with depth; (2) the anisotropy ratio of gas permeability; (3) the settlement caused by waste biodegradation. Furthermore, a single peak model for gas production is applied as the source term of gas production. The equation for settlement caused by waste biodegradation is presented, and the time of peak gas production rate is obtained by fitting the settlement of the newly filled layer. The stratification of the unsaturated and saturated regions is taken into account by distinguishing the difference in gas saturation. The layering of the new and old waste layers is considered by distinguishing the difference in the length of time that waste has been degraded to produce gas. Based on the method of numerical calculation, the gas pressure distribution in the landfill with layered new and old MSW is well simulated. The position where the maximum gas pressure occurs is found. The sensitivity analysis shows that the influence of the anisotropy ratio on gas pressure distribution is more significant.https://doi.org/10.1038/s41598-021-88858-5
collection DOAJ
language English
format Article
sources DOAJ
author Tao Zhang
Jianyong Shi
Xun Wu
Hai Lin
Xiulei Li
spellingShingle Tao Zhang
Jianyong Shi
Xun Wu
Hai Lin
Xiulei Li
Simulation of gas transport in a landfill with layered new and old municipal solid waste
Scientific Reports
author_facet Tao Zhang
Jianyong Shi
Xun Wu
Hai Lin
Xiulei Li
author_sort Tao Zhang
title Simulation of gas transport in a landfill with layered new and old municipal solid waste
title_short Simulation of gas transport in a landfill with layered new and old municipal solid waste
title_full Simulation of gas transport in a landfill with layered new and old municipal solid waste
title_fullStr Simulation of gas transport in a landfill with layered new and old municipal solid waste
title_full_unstemmed Simulation of gas transport in a landfill with layered new and old municipal solid waste
title_sort simulation of gas transport in a landfill with layered new and old municipal solid waste
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-05-01
description Abstract Average biodegradation rate of newly filled municipal solid waste (MSW) in landfills is relatively fast, and the landfill gas produced by the new MSW biodegradation can cause great variations in gas pressure. To predict the gas pressure distribution in the MSW layer, a one-dimensional gas transport model is established in this study. The following factors are considered in this model: (1) the variation of gas permeability with depth; (2) the anisotropy ratio of gas permeability; (3) the settlement caused by waste biodegradation. Furthermore, a single peak model for gas production is applied as the source term of gas production. The equation for settlement caused by waste biodegradation is presented, and the time of peak gas production rate is obtained by fitting the settlement of the newly filled layer. The stratification of the unsaturated and saturated regions is taken into account by distinguishing the difference in gas saturation. The layering of the new and old waste layers is considered by distinguishing the difference in the length of time that waste has been degraded to produce gas. Based on the method of numerical calculation, the gas pressure distribution in the landfill with layered new and old MSW is well simulated. The position where the maximum gas pressure occurs is found. The sensitivity analysis shows that the influence of the anisotropy ratio on gas pressure distribution is more significant.
url https://doi.org/10.1038/s41598-021-88858-5
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