Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design

Leachate is produced from the infiltration of rainwater through landfill that contaminates the groundwater with some dissolved, suspended particles such as heavy metals and microplastic. Since this issue will endanger human health and pollute the environment, a clay liner is considered to mitigate s...

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Published in:AIP Conference Proceedings
Main Author: Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
Format: Conference paper
Language:English
Published: American Institute of Physics 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188301538&doi=10.1063%2f5.0192823&partnerID=40&md5=f0ae76ba1ef77233b9d53cf723805fb2
id 2-s2.0-85188301538
spelling 2-s2.0-85188301538
Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
2024
AIP Conference Proceedings
3014
1
10.1063/5.0192823
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188301538&doi=10.1063%2f5.0192823&partnerID=40&md5=f0ae76ba1ef77233b9d53cf723805fb2
Leachate is produced from the infiltration of rainwater through landfill that contaminates the groundwater with some dissolved, suspended particles such as heavy metals and microplastic. Since this issue will endanger human health and pollute the environment, a clay liner is considered to mitigate significant leakage of leachate from a landfill liner system. However, a conventional lining system, geosynthetic clay liner (GCL), has a high possibility for degradation due to some pathogen that might catalyse the hydrolysis of polyester of geosynthetic material. In contrast, compacted clay liners (CCL) have an instability issue due to swelling as well as shrinkage. Thus, lime-laterite stabilised soil has been chosen to test its compatibility to be used as a lining system. Past researchers have stated that adding an effective lime percentage that produces a pH of 12 is one of the mechanisms that can significantly decrease the pathogen in the leachate and improve the absorption of heavy metal ions by the lime-laterite soil. Therefore, the hydromechanical behaviour of laterite soil under unsaturated soil with the treatment of quicklime can be analysed by conducting a soil water characteristic curve (SWCC). This study will be applied as a lining system that acts as a hydraulic barrier that prevents the permeation of leachate. In the geotechnical laboratory, the soil sample was analysed with the pressure plate testing equipment. For this study, lime dosages of 3%, 5%, 7%, and 9% by weight with seven days (7) of optimum curing are applied for soil stabilisation. Fredlund and Xing (1994) and Van Genutchen (1980) models are used to developing the SWCC curve-fitting graph with a suction range between 0.1 kPa and 1,000 MPa. The finding of this study can summarise that increment of quicklime addition can drop the volumetric water content, thus risen the air entry value (AEV). In conclusion, overall results show that the water-holding capacity of untreated and treated laterite soil decreases with increasing lime content. This initial finding shows insights into the possibility of treated soil being used in the landfill using 5% of lime laterite stabilised soil as the best design in terms of SWCC, thus solving the leachate permeation problem. © 2024 Author(s).
American Institute of Physics
0094243X
English
Conference paper
All Open Access; Bronze Open Access
author Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
spellingShingle Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
author_facet Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
author_sort Binti Zakaria N.S.S.; Binti Jusoh S.N.; Binti Mohd Yunus N.Z.; Hezmi M.A.B.; Razali R.; Binti Ahmad Rizal N.H.
title Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
title_short Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
title_full Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
title_fullStr Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
title_full_unstemmed Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
title_sort Soil water characteristic curve (SWCC) of lime-laterite stabilised soil as a lining-system design
publishDate 2024
container_title AIP Conference Proceedings
container_volume 3014
container_issue 1
doi_str_mv 10.1063/5.0192823
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85188301538&doi=10.1063%2f5.0192823&partnerID=40&md5=f0ae76ba1ef77233b9d53cf723805fb2
description Leachate is produced from the infiltration of rainwater through landfill that contaminates the groundwater with some dissolved, suspended particles such as heavy metals and microplastic. Since this issue will endanger human health and pollute the environment, a clay liner is considered to mitigate significant leakage of leachate from a landfill liner system. However, a conventional lining system, geosynthetic clay liner (GCL), has a high possibility for degradation due to some pathogen that might catalyse the hydrolysis of polyester of geosynthetic material. In contrast, compacted clay liners (CCL) have an instability issue due to swelling as well as shrinkage. Thus, lime-laterite stabilised soil has been chosen to test its compatibility to be used as a lining system. Past researchers have stated that adding an effective lime percentage that produces a pH of 12 is one of the mechanisms that can significantly decrease the pathogen in the leachate and improve the absorption of heavy metal ions by the lime-laterite soil. Therefore, the hydromechanical behaviour of laterite soil under unsaturated soil with the treatment of quicklime can be analysed by conducting a soil water characteristic curve (SWCC). This study will be applied as a lining system that acts as a hydraulic barrier that prevents the permeation of leachate. In the geotechnical laboratory, the soil sample was analysed with the pressure plate testing equipment. For this study, lime dosages of 3%, 5%, 7%, and 9% by weight with seven days (7) of optimum curing are applied for soil stabilisation. Fredlund and Xing (1994) and Van Genutchen (1980) models are used to developing the SWCC curve-fitting graph with a suction range between 0.1 kPa and 1,000 MPa. The finding of this study can summarise that increment of quicklime addition can drop the volumetric water content, thus risen the air entry value (AEV). In conclusion, overall results show that the water-holding capacity of untreated and treated laterite soil decreases with increasing lime content. This initial finding shows insights into the possibility of treated soil being used in the landfill using 5% of lime laterite stabilised soil as the best design in terms of SWCC, thus solving the leachate permeation problem. © 2024 Author(s).
publisher American Institute of Physics
issn 0094243X
language English
format Conference paper
accesstype All Open Access; Bronze Open Access
record_format scopus
collection Scopus
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