GEOPOLYMER STABILIZATION OF CLAY SOIL USING EFB ASH AND METAKAOLIN

Authors

  • Merdy Evalina Silaban Building Construction Technology Study Program, Department of Civil Engineering and Infrastructure, Astra Polytechnic
  • Andry Wisnu Prabowo Building Construction Technology Study Program, Department of Civil Engineering and Infrastructure, Astra Polytechnic
  • Albertus Aan Dian Nugroho Manufacturing Tooling Engineering Study Program, Department of Industrial Machinery, Astra Polytechnic

DOI:

https://doi.org/10.21009/jpensil.v15i3.70600

Keywords:

Soil Stabilization, Geopolymer, Oil Palm Empty Fruit Bunch Ash, Metakaolin, Unconfined Compressive Strength

Abstract

Clay soils with low bearing capacity can pose challenges in construction, requiring stabilization to improve their engineering properties. This study investigates the use of empty fruit bunch ash (EFB ash) and metakaolin as geopolymer-based materials for clay soil stabilization. Metakaolin:EFB ash ratios of 75:25, 60:40, and 50:50 were evaluated at binder contents of 10% and 15%. NaOH concentrations of 8 M, 10 M, and 12 M were used as alkaline activators, with curing periods of 52, 77, and 109 days. Unconfined compressive strength (UCS) was evaluated under unconfined axial loading. The untreated soil exhibited a UCS of 0.325 MPa, while the highest UCS after stabilization reached 3.291 MPa, obtained with a 50:50 metakaolin:EFB ash ratio, 10% binder content, 12 M NaOH, and 52 days of curing. This value represents an approximately 10.1fold increase compared with the untreated soil. The results show that the 50:50 metakaolin:EFB ash ratio and 10% binder content generally produced higher UCS values, while 10 M NaOH yielded the highest average UCS among the tested activator concentrations. The higher strength at the 50:50 ratio may be associated with interactions between metakaolin and EFB ash, although this mechanism requires further chemical and microstructural verification. Overall, the results indicate that the metakaolin and EFB ash combination has potential for clay soil stabilization, including applications such as subgrade and stabilized fills, subject to applicable technical requirements.

References

Abriantoro, A. P., & Simanjuntak, M. R. A. (2025). The Effect Of Alkali Activator Molarity On The Mechanical Performance Of Geopolymer Paving Blocks Based On Waste Glass Powder And Fly Ash. Jurnal PenSil, 14(1), 39–49. https://doi.org/10.21009/jpensil.v14i1.50676

Agus Nugroho, S., Wisaksono, B., Suharyadi, H., & Hendri, A. (2023). Efek Penambahan Bahan Aditif Non-Alami terhadap Perilaku Lempung Plastisitas Tinggi yang Distabilisasi dengan Semen Effect of Non-Natural Additives on Behavior of High Plasticity Clay Stabilization based Cement. In Jurnal Ilmiah Teknik Kimia (Vol. 20, Number 1).

Amalia, G., & Sriwijaya Minaka, U. (2024). Analisis Eksperimental Nilai Kuat Tekan Bebas Tanah Gambut Akibat Substitusi Geopolimer. Jurnal Teknik Sipil ITP, 11(2). https://doi.org/10.21063/JTS.2024.V1102.088-94

Andajani, N., & Risdianto, Y. (2022). Penambahan Kapur Sebagai Stabilisasi Tanah Ekspansif untuk Lapisan Tanah Dasar (Subgrade). Publikasi Riset Orientasi Teknik Sipil (Proteksi), 4(2), 90–95. https://doi.org/10.26740/proteksi.v4n2.p90-95

Anggraini, M., & Saleh, A. (2020). Penambahan Abu Tandan Kelapa Sawit dan Semen Terhadap Nilai CBR (California Bearing Ratio) Pada Tanah Lempung. Siklus : Jurnal Teknik Sipil, 6(1), 49–55. https://doi.org/10.31849/siklus.v6i1.3772

Anggraini, M., & Saleh, A. (2021). Stabilisasi Tanah Lempung Dengan Abu Tandan Kosong Kelapa Sawit dan Semen Terhadap Kuat Tekan Bebas. Sainstek (e-Journal), 9(2), 108–115. https://doi.org/10.35583/js.v9i2.182

Anggrainil, M., Trisep Haris, V., & Alfian Saleh, dan. (2022). Stabilisasi Tanah Lempung Dengan Abu Tandan Sawit Dan Semen Terhadap Tingkat Kepadatan Tanah. In Jurnal Rab Contruction Research (Vol. 7, Number 1). http://jurnal.univrab.ac.id/index.php/racic

Aprilia, R., Liliana, L., & Frieda, F. (2025). Substitusi Parsial dan Full Semen Konvensional pada Campuran Beton Geopolimer Berbahan Baku Arang Cangkang Kelapa Sawit. Jurnal Talenta Sipil, 8(1), 374. https://doi.org/10.33087/talentasipil.v8i1.658

Apriyanti, Y., Hidayatussa’diah, H., & Fahriani, F. (2021). Pengaruh Penambahan Limbah Abu Cangkang Sawit (Pofa) Terhadap Nilai California Bearing Ratio (Cbr) Untuk Stabilisasi Tanah Lempung. FROPIL (Forum Profesional Teknik Sipil), 8(2), 102–109. https://doi.org/10.33019/fropil.v8i2.2143

Ayodele, A. L., Ajayi, R., & Adeyemo, S. T. (2025). Effect of geopolymerization on geotechnical characteristics of palm kernel shell ash stabilized laterite. In Journal Of Materials And Engineering Structures (Vol. 12).

Desiandhy, A. P., Lie, I., Wong, K., & Apriyani, I. (2024). Stabilisasi Tanah Menggunakan Limbah Karbit dan Bottom Ash Terhadap Nilai Kuat Tekan Bebas. Paulus Civil Engineering Journal (PCEJ), 6(1).

Diah Sepdayanti, A., Sarie, F., & Gandi, S. (2022). Pengaruh Penambahan Abu Tandan Kelapa Sawit Dan Semen Terhadap Kuat Geser Tanah Gambut The Effect Of The Addition Of Palm Oil Fruit Ash And Cement On The Strength Of Peat Soil. https://transukma.uniba-bpn.ac.id/index.php/transukma/article/view/104

Disu, A. A., & Kolay, P. K. (2021). A Critical Appraisal of Soil Stabilization Using Geopolymers: The Past, Present and Future. International Journal of Geosynthetics and Ground Engineering, 7(2). https://doi.org/10.1007/s40891-021-00267-w

Farichah, H., Hutama, D. A., & Solin, D. P. (2023). Evaluation Of The Strength Characteristic Of Soil Stabilized With Fly Ash. Jurnal PenSil, 12(3), 273–280. https://doi.org/10.21009/jpensil.v12i3.37489

Indera Kusuma, R., Cahyani, F. P., Mina, E., & Fathonah, W. (2024). Pemanfaatan Limbah Ground Granulate Blast Furnace Slag Sebagai Bahan Geopolimer Untuk Stabilisasi Tanah Dasar (Utilization Of Ground Granulate Blast Furnace Slag Waste As Geopolymer Material For Subgrade Stabilization) (Vol. 41, Number 2).

Jeremiah, J. J., Abbey, S. J., Booth, C. A., & Kashyap, A. (2021). Geopolymers as Alternative Sustainable Binders for Stabilisation of Clays—A Review. In Geotechnics (Vol. 1, Number 2, pp. 439–459). Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/geotechnics1020021

Bagaskara, P. O., Oktarise Dwina, D., & Abiyoga, P. (2025). Pengaruh Stabilisasi Geopolimer Berbahan Dasar POFA Terhadap The Effect of POFA-Based Geopolymer Stabilization on the Index Density Behavior of Peat Soil.

Kholis, N., Setyowati Srie Gunarti, A., & Sylviana, R. (2018). Stabilisasi Tanah Lempung Menggunakan Semen Dan Renolith Clay Soil Stabilization Using Cement And Renolith (Vol. 6, Number 1).

Lim, A., & Darian, E. (2022). Perbaikan Tanah Lunak Menggunakan Campuran Ferronickle Slag Dan Kalium Serta Natrium Hidroksida. Jurnal Rekayasa Sipil (JRS-Unand), 18(3), 202–213. https://doi.org/10.25077/jrs.18.3.202-213.2022

Mildawati, R., & Hidayat, R. W. (2023). Studi Pengaruh Penggunaan Campuran Abu Fiber Kelapa Sawit dan Semen Untuk Stabilisasi Tanah Lempung. JICE-Journal of Infrastructure and Civil Engineering, 3(2), 75–83. https://doi.org/10.35583/jice.v3i2.40

Misnawati. (2018). Studi Peningkatan Karakteristik Tanah Lempung Dengan Serat Tandan Kosong Kelapa Sawit. Jurnal Teknologi Berkelanjutan (Sustainable Technology Journal, 7(2), 97–103. http://jtb.ulm.ac.id/index.php/JTB

Ningrum, P. (2022). Perubahan Nilai CBR pada Tanah Lempung yang dicampur Abu Tandan Sawit. Journal Of Infrastructure And Civil EngineerING, 2(2).

Ningrum, P., Toyeb, M., & Auliandi, M. (2023). Pengaruh Penambahan Palm Oil Fuel Ash terhadap Nilai Kuat Tekan Bebas Tanah berdasarkan Hasil Uji UCT. Sainstek (e-Journal), 243–247.

Nugraha, S. S. H., Sani, D., Fitriyana, L., & Sulistyo, J. A. (2026). Stabilisasi Tanah Lunak Menggunakan Campuran Ferronickle Slag dan Alkali. Journal of Engineering and Applied Technology, 2.

Nugroho, S. A., Fatnanta, F., Wibisono, G., & Muliyono. (2025). Correlation of CBR Values and Mackintosh Probe on Clay Soil with Variations of Bentonite, Kaolin and Sand. Journal of Geoscience, Engineering, Environment, and Technology, 10(4), 486–492. https://doi.org/10.25299/jgeet.2025.10.4.24252

Nurrohman, F. H., & Ali, M. K. K. (2026). Improving The Elastic Modulus Of Clay Using Biostimulated Microbially Induced Calcite Precipitation (MICP). Jurnal PenSil, 15(1), 66–77. https://doi.org/10.21009/jpensil.v15i1.61448

Oktarise Dwina, D., Kumalasari, D., & Fitriani, E. (2021). Stabilisasi Tanah Gambut Dengan Penambahan Material Kapur Dan Fly Ash Dari Sisa Pembakaran Cangkang Sawit Sebagai Subgrade Jalan.

Panggabean, D., & Anggraini, M. (2021). Jurnal Teknik Sipil Stabilisasi Tanah Lempung Menggunakan Abu Tandan Kelapa Sawit Dan Semen Untuk Meningkatkan Nilai CBR. Jurnal Teknik Sipil, 10(1), 2021–2070.

Ria, S., & Masri, M. (2020). Effect of Curing To Compressive Strength Value Serdang River Clay Soil Batang Kuis Deli Serdang With The Addition Palm Shell Ash. JCEBT, 4(1), 2020. http://ojs.uma.ac.id/index.php/jcebt

Pramesti, R. W., & Roesdiana, T. (2026). Comparative Analysis Of Fly Ash And Lime On The Compressive Strength Of Geopolymer Mortar. Jurnal PenSil, 15(2), 314–322. https://doi.org/10.21009/jpensil.v15i2.66612

Prasetyo, Q. A., Firmansyah, Y. K., & Farichah, H. (2025). Stabilisasi Tanah Lunak Menggunakan Geopolimer untuk Meningkatkan Nilai CBR Subgrade. Briliant: Jurnal Riset Dan Konseptual, 10(3), 814–822. https://doi.org/10.28926/briliant.v10i3.2030

Purba, D. A., Syahril, & Sagala, S. D. (2025). Improvement Of Mechanical Properties Of Clay With Calcite And Silica Fume: Unconfined Compressive Strength. Jurnal PenSil, 14(2), 199–211. https://doi.org/10.21009/jpensil.v14i2.54156

Rokky, M., Simanjuntak, A., Lubis, K., Nuril, &, & Rangkuti, M. (2017). Stabilisasi Tanah Lempung dengan Campuran Pasir Pantai terhadap Nilai CBR Stabilization of Clay Lands with Coastal Sand Mixes on CBR Value. JCEBT, 1(2). http://ojs.uma.ac.id/index.php/jcebt

Rusan Rangan, P., Tandy Arrang, A., Nusantara No, J., Toraja, T., & Selatan, S. (2020). Stabilisasi Tanah Lempung Ekspansif dengan Limbah Keramik (Studi Kasus: Tanah di Tanete, Lembang Limbong, Kecamatan Rembon, Kabupaten Tana Toraja). https://repository.ukitoraja.ac.id/id/eprint/327/1/Stabilisasi%20Tanah%20Lempung%20Ekspansif%20dengan%20Limbah%20Keramik.pdf

S, Muh. S., Antonius, A., & Setiyawan, P. (2026). Karakterisasi Material Geopolimer Berbasis Fly Ash, Kapur Padam, dan Tanah Laterit. RESWARA: Jurnal Riset Ilmu Teknik, 4(3), 190–205. https://doi.org/10.70716/reswara.v4i3.581

Setyaningrum, D. J., Yuswandono, M., Amalia, D., Verani, A., Sihombing, R., Krisologus, Y. P., Siswanto, A., & Sukandar, M. (2023). The Effect Of Biopolymer Mixture As A Stabilization Agent On Peat Soil To Increase Soil Shear Strength By Direct Shear Test.

Silaban, M. E., Sitorus, P. H., & Rochmawati, R. (2024). “Inovasi Pengembangan Infrastruktur di Daerah Otonomi Baru untuk Mencapai Tujuan Pembangunan Berkelanjutan (SDG)” Perkuatan Sifat Tanah Lempung Dengan Modifikasi Geopolimer Berbasis Metakaolin.

Soewignjo A, & Nugroho. (2020). Pemanfaatan Geopolimer Abu Terbang Sebagai Pozzolanic Tanah Lempung Untuk Material Tanah Dasar Perkerasan. In Jurnal Fondasi (Vol. 9).

Toyeb, M., & Ningrum, P. (2024). Pengaruh Rasio Alkali Aktivator Dalam Campuran Tanah-Pofa Berdasarkan Uji Tekan Bebas. In Jurnal Rab Contruction Research (Vol. 9, Number 1). http://jurnal.univrab.ac.id/index.php/racic

Wibisono, G., Azizi, W., Putra, A. I., Satibi, S., & Olivia, M. (2025). Stabilisasi Tanah Gambut Dengan Geopolimer Hibrid Abu Terbang Dan Pasir. Jurnal Bangunan, Konstruksi & Desain, 3(4), 182–194. https://doi.org/10.25077/jbkd.3.4.182-194.2025

Downloads

Published

2026-09-30

How to Cite

Silaban, M. E., Prabowo, A. W., & Nugroho, A. A. D. (2026). GEOPOLYMER STABILIZATION OF CLAY SOIL USING EFB ASH AND METAKAOLIN. Jurnal PenSil, 15(3), 577–590. https://doi.org/10.21009/jpensil.v15i3.70600