Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands

The physical, geochemical, and clay mineralogical properties are location dependent and influence landslide, yet this relationship is understudied in the Cameron Highlands. Therefore, this study demonstrates the effect of the selected physical-geochemical properties and clay mineralogy on landslide...

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Main Authors: Olaniyan, Abdulrasheed, Abu Bakar, Ahmad Farid, Yusoff, Ismail, Abd Ghani, Azman, Qaysi, Saleh, Kahal, Ali, Alfaifi, Hussain, Alzahrani, Hassan
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Published: De Gruyter 2021
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Online Access:http://eprints.um.edu.my/34002/
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spelling my.um.eprints.340022022-06-27T01:32:00Z http://eprints.um.edu.my/34002/ Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands Olaniyan, Abdulrasheed Abu Bakar, Ahmad Farid Yusoff, Ismail Abd Ghani, Azman Qaysi, Saleh Kahal, Ali Alfaifi, Hussain Alzahrani, Hassan QE Geology The physical, geochemical, and clay mineralogical properties are location dependent and influence landslide, yet this relationship is understudied in the Cameron Highlands. Therefore, this study demonstrates the effect of the selected physical-geochemical properties and clay mineralogy on landslide susceptibility (LS) in the Cameron Highlands, Malaysia. Seven soil samples were taken from non-landslide-affected slopes (NAS) and 13 from landslide-affected slopes (LAS), making a total of 20 samples that were analyzed. The degree of the LAS and NAS ranges from 42-80 degrees and 30-70 degrees, respectively. The NAS soils were characterized by lower sand, higher clay, higher organic matter content (OMC), and higher cation exchange capacity (CEC). Soils with high sand tend to have larger free pores and weak bonds, making them more vulnerable to landslides. The electrostatic charges on the clay's surface bind the solution ions, increasing cohesion between soil particles. Also, high CEC in soils improves their stability through the binding effect resulting from the attraction between solution ions via the electrostatic surface charges of the clay in the soil. The clay mineralogy revealed the abundance of kaolinite and illite, indicating the last stage of weathering associated with the weathering of primary minerals forming the bedrock. In this study, it was demonstrated that high sand, low clay, low OMC, low CEC, and clay mineralogy of the soil were associated with slope failure in the study area. De Gruyter 2021-08-18 Article PeerReviewed Olaniyan, Abdulrasheed and Abu Bakar, Ahmad Farid and Yusoff, Ismail and Abd Ghani, Azman and Qaysi, Saleh and Kahal, Ali and Alfaifi, Hussain and Alzahrani, Hassan (2021) Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands. Open Geosciences, 13 (1). pp. 880-894. ISSN 2391-5447, DOI https://doi.org/10.1515/geo-2020-0281 <https://doi.org/10.1515/geo-2020-0281>. 10.1515/geo-2020-0281
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QE Geology
spellingShingle QE Geology
Olaniyan, Abdulrasheed
Abu Bakar, Ahmad Farid
Yusoff, Ismail
Abd Ghani, Azman
Qaysi, Saleh
Kahal, Ali
Alfaifi, Hussain
Alzahrani, Hassan
Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
description The physical, geochemical, and clay mineralogical properties are location dependent and influence landslide, yet this relationship is understudied in the Cameron Highlands. Therefore, this study demonstrates the effect of the selected physical-geochemical properties and clay mineralogy on landslide susceptibility (LS) in the Cameron Highlands, Malaysia. Seven soil samples were taken from non-landslide-affected slopes (NAS) and 13 from landslide-affected slopes (LAS), making a total of 20 samples that were analyzed. The degree of the LAS and NAS ranges from 42-80 degrees and 30-70 degrees, respectively. The NAS soils were characterized by lower sand, higher clay, higher organic matter content (OMC), and higher cation exchange capacity (CEC). Soils with high sand tend to have larger free pores and weak bonds, making them more vulnerable to landslides. The electrostatic charges on the clay's surface bind the solution ions, increasing cohesion between soil particles. Also, high CEC in soils improves their stability through the binding effect resulting from the attraction between solution ions via the electrostatic surface charges of the clay in the soil. The clay mineralogy revealed the abundance of kaolinite and illite, indicating the last stage of weathering associated with the weathering of primary minerals forming the bedrock. In this study, it was demonstrated that high sand, low clay, low OMC, low CEC, and clay mineralogy of the soil were associated with slope failure in the study area.
format Article
author Olaniyan, Abdulrasheed
Abu Bakar, Ahmad Farid
Yusoff, Ismail
Abd Ghani, Azman
Qaysi, Saleh
Kahal, Ali
Alfaifi, Hussain
Alzahrani, Hassan
author_facet Olaniyan, Abdulrasheed
Abu Bakar, Ahmad Farid
Yusoff, Ismail
Abd Ghani, Azman
Qaysi, Saleh
Kahal, Ali
Alfaifi, Hussain
Alzahrani, Hassan
author_sort Olaniyan, Abdulrasheed
title Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
title_short Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
title_full Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
title_fullStr Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
title_full_unstemmed Physical, geochemical, and clay mineralogical properties of unstable soil slopes in the Cameron Highlands
title_sort physical, geochemical, and clay mineralogical properties of unstable soil slopes in the cameron highlands
publisher De Gruyter
publishDate 2021
url http://eprints.um.edu.my/34002/
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