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      Improving the Engineering Properties of Laterite Soil Using Sharp Sand: A Sustainable Stabilization Technique

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            Abstract

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            Author and article information

            Journal
            ScienceOpen Preprints
            ScienceOpen
            26 October 2024
            Affiliations
            [1 ] Department of Chemistry, University of Abuja, Federal Capital Territory, Nigeria. ( https://ror.org/007e69832)
            [2 ] Department of Accounting, Faculty of Management Sciences, University of Jos. ( https://ror.org/009kx9832)
            [3 ] Department of Mathematics, Faculty of Physical Sciences, Federal University of Technology Minna. ( https://ror.org/0568y3j03)
            Author notes
            Author information
            https://orcid.org/0009-0008-6399-2314
            Article
            10.14293/PR2199.001219.v1
            b4ff3967-3c76-4092-be09-44223586ed94

            This work has been published open access under Creative Commons Attribution License CC BY 4.0 , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Conditions, terms of use and publishing policy can be found at www.scienceopen.com .

            History
            : 26 October 2024
            Categories

            All data generated or analysed during this study are included in this published article (and its supplementary information files).
            Chemistry
            Soil stabilization, Laterite soil, Sharp sand, Compaction, Plasticity index, Mechanical stabilization

            References

            1. Joel M, Edeh EJ. Stabilization of Ikpayongo laterite with cement and calcium carbide waste. Global Journal of Pure and Applied Sciences. Vol. 20(1)2015. African Journals Online (AJOL). [Cross Ref]

            2. Joel Manasseh, Agbede Isaac O.. Mechanical-Cement Stabilization of Laterite for Use as Flexible Pavement Material. Journal of Materials in Civil Engineering. Vol. 23(2):146–152. 2011. American Society of Civil Engineers (ASCE). [Cross Ref]

            3. Mensah Sarfo, Ameyaw Collins, Abaitey Blondel Akun, Yeboah Hayford Obeng. Optimizing stabilization of laterite as walling unit. Journal of Engineering, Design and Technology. Vol. 20(6):1482–1498. 2022. Emerald. [Cross Ref]

            4. Abdullah Abd Halid, Nagapan Sasitharan, Antonyova Anna, Rasiah Kannan, Yunus Riduan, Sohu Samiullah. Comparison of Strength Between Laterite Soil and Clay Compressed Stabilized Earth Bricks (CSEBs). MATEC Web of Conferences. Vol. 103:2017. EDP Sciences. [Cross Ref]

            5. Ogundipe Olumide Moses, Adekanmi Jonathan Segun, Akinkurolere Olufunke Olanike, Ale Peter Olu. Effect of Compactive Efforts on Strength of Laterites Stabilized with Sawdust Ash. Civil Engineering Journal. Vol. 5(11):2502–2514. 2019. Ital Publication. [Cross Ref]

            6. Latifi Nima, Marto Aminaton, Eisazadeh Amin. Physicochemical behavior of tropical laterite soil stabilized with non-traditional additive. Acta Geotechnica. Vol. 11(2):433–443. 2016. Springer Science and Business Media LLC. [Cross Ref]

            7. Lemougna Patrick N., Melo Uphie F. Chinje, Kamseu Elie, Tchamba Arlin B.. Laterite Based Stabilized Products for Sustainable Building Applications in Tropical Countries: Review and Prospects for the Case of Cameroon. Sustainability. Vol. 3(1):293–305. 2011. MDPI AG. [Cross Ref]

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