This study investigates the effect of adding granite powder to black cotton soil, focusing on its impact on the strength and mechanical properties of the soil. Different percentages of granite powder (5%, 10%, 15%, and 20%) were added to the soil, and various laboratory tests were performed to evaluate soil properties, including shrink-swell behavior, compaction, and Atterberg limits. The results show significant improvements in the mechanical properties of the soil, with the highest enhancement observed at a 20% granite powder addition. The study also explores the potential of granite powder to reduce soil swelling and shrinkage, enhance compaction characteristics, and increase the soil’s ability to bear load. The findings of this study contribute to understanding the potential of using granite powder as a soil stabilizer in geotechnical engineering applications, particularly for improving soil stability in construction and agricultural projects.
Kirpan, T.R., Kharatmol, V.V., Nimse, S.S., Kambale, U.R. and Jadhav, N. (2024) Soil Stabilization of Black Cotton Soil by Using Granite Powder. https://www.researchpublish.com/papers/soil-stabilization-of-black-cotton-soil-by-using-granite-powder
Mishra, J., Yadav, R.K. and Singhai, A.K. (2014) Effect of Granite Dust on Engineering Properties of Lime Stabilized Black Cotton Soil. International Journal of Engineering Research , 3, 832-837. https://www.ijert.org/research/effect-of-granite-dust-on-engineering-properties-of-lime-stabilized-black-cotton-soil-IJERTV3IS10178.pdf
Suliman, M.O. and Alkherret, A.J. (2020) Using Fine Silica Sand and Granite Powder Waste to Control Free Swelling Behavior of High Expansive Soil. Modern Applied Science , 15, 53-62. https://doi.org/10.5539/mas.v15n1p53
Arya, P., Patel, S.B., Bharti, G., Shukla, B.K. and Hurukadli, P. (2023) Impact of Using a Blend of Bagasse Ash and Polyester Fiber in Black Cotton Soil for Improvement of Mechanical and Geotechnical Properties of Soil. Materials Today : Proceedings , 78, 738-743. https://doi.org/10.1016/j.matpr.2022.10.122
Kashinath, Krishnaiah, D.S. and Prakash, D.K.B. (2022) Effect of Addition of Granite Stone Powder and Different Fibres on the Behaviour of Sulfate Infected BC Soil. International Journal for Research in Applied Science and Engineering Technology , 10, 4177-4195. https://doi.org/10.22214/ijraset.2022.43382
Essowedeou Agate, E., Timothy, N., O. Nathaniel, A. and Ngassam, I. (2024) Performance of Expansive Soil Stabilized with Bamboo Charcoal, Quarry Dust, and Lime for Use as Road Subgrade Material. International Journal of Civil Engineering , 11, 108-120. https://doi.org/10.14445/23488352/ijce-v11i2p110
Babu, K.M. and Nagaraju, C. (2022) Stabilization of Black Cotton Soil Using Granite Waste. Journal of Engineering Sciences , 13, 534-538. https://jespublication.com/upload/2022-V13I1167.pdf
Athipathy, M., Vijayakumar, M., Krishnakumar, P. and Clement, M. (2021) An Experimental Research on Stabilization of Black Cotton Soil Using Granite Dust and Glass Fiber. https://www.academia.edu/86943317/An_Experimental_Research_on_Stabilization_of_Black_Cotton_soil_using_Granite_dust_and_Glass_fiber
Kodikara, J., Islam, T. and Sounthararajah, A. (2018) Review of Soil Compaction: History and Recent Developments. Transportation Geotechnics , 17, 24-34. https://doi.org/10.1016/j.trgeo.2018.09.006
Navagire, O.P., Sharma, S.K. and Rambabu, D. (2022) Stabilization of Black Cotton Soil with Coal Bottom Ash. Materials Today : Proceedings , 52, 979-985. https://doi.org/10.1016/j.matpr.2021.10.447
Abdelkader, H.A.M., Hussein, M.M.A. and Ye, H. (2021) Influence of Waste Marble Dust on the Improvement of Expansive Clay Soils. Advances in Civil Engineering , 2021, Article ID: 3192122. https://pdfs.semanticscholar.org/6508/b4df3f7a19cb5d77d71cf013208e4ae254a8.pdf
Liu, Y., Yu, L. and Wan, J. (2025) Mechanical Properties and Microscopic Mechanism of Granite Residual Soil Stabilized with Biopolymers. Applied Sciences , 15, Article 5223. https://doi.org/10.3390/app15105223
Amulya, G., Moghal, A.A.B. and Almajed, A. (2021) A State-of-the-Art Review on Suitability of Granite Dust as a Sustainable Additive for Geotechnical Applications. Crystals , 11, Article 1526. https://doi.org/10.3390/cryst11121526
Murthi, P., Saravanan, R. and Poongodi, K. (2021) Studies on the Impact of Polypropylene and Silica Fume Blended Combination on the Material Behaviour of Black Cotton Soil. Materials Today : Proceedings , 39, 621-626. https://doi.org/10.1016/j.matpr.2020.09.004
Yaswanth, N. (2023) Stabilization of Black Cotton Soil by Using Flyash and Granite Dust. International Journal of Research Publication and Reviews , 4, 951-958. https://ijrpr.com/uploads/V4ISSUE4/IJRPR11450.pdf
Al-Gharbawi, A.S.A., Najemalden, A.M. and Fattah, M.Y. (2022) Expansive Soil Stabilization with Lime, Cement, and Silica Fume. Applied Sciences , 13, Article 436. https://doi.org/10.3390/app13010436
Mohana Vignesh, R. and Thiagu, H. (2017) Experimental Study on Natural Fibers in RCC Beams. Internation al Journal of Civil Engineering and Technology , 8, 179-184. https://iaeme.com/MasterAdmin/Journal_uploads/IJCIET/VOLUME_8_ISSUE_4/IJCIET_08_04_023.pdf
Eltwati, A.S., Tarhuni, F. and Elkaseh, A. (2020) Engineering Properties of Clayey Soil Stabilized with Waste Granite Dust. International Journal of Advance Science and Technology , 29, 750-757. https://www.academia.edu/69690263/Engineering_Properties_of_Clayey_Soil_stabilized_with_Waste_Granite_Dust
Zumerway, M.M., and Hamza, O.S.M. (2012) Improving the Characteristics of Expansive Subgrade Soils Using Lime and Fly Ash. Geotechnical Testing Journal , 35, 1023-1032. https://scholar.google.com/scholar_lookup?title=Improving+the+Characteristics+of+Expansive+Subgrade+Soils+Using+Lime+and+Fly+Ash&author=M.M.+Zumerway&author=O.S.M.+Hamza&publication_year=2012
Garrett Ennis, E. (2020) Modifications to Aristotle’s Poetics. SSRN Electronic Jour nal . https://www.researchgate.net/publication/332133698_Modifications_to_Aristotle's_Poetics
Luo, Y., Wen, T., Lin, X., Chen, X. and Shao, L. (2024) Quantitative Analysis of Pore-Size Influence on Granite Residual Soil Permeability Using CT Scanning. Journal of Hydrology , 645, Article ID: 132133. https://doi.org/10.1016/j.jhydrol.2024.132133
Liu, W., Sun, J., Gui, B., Gan, Y., Luo, S., Su, Y., et al. (2025) Experimental Study on Splash Erosion Resistance of Granite Residual Soil Improved by Microbially Induced Carbonate Precipitation. Soil and Tillage Research , 254, Article ID: 106758. https://doi.org/10.1016/j.still.2025.106758
Wang, Y., Jia, R., Li, Y., Yang, K., Cui, J. and Shan, Y. (2024) Study on the Mechanical Properties and Microscopic Evolution Mechanisms of Weathered Granite Soil. Scientific Reports , 14, Article No. 24388. https://doi.org/10.1038/s41598-024-75092-y
Lu, Y., Shi, Y., Chen, B., Feng, Z. and Hu, J. (2024) Structural Damage Characteristics and Mechanism of Granite Residual Soil. Applied Rheology , 34, Article ID: 20240011 https://doi.org/10.1515/arh-2024-0011
Ali Shah, S.H., Arif, M., Asif, M.E. and Safdar, M. (2019) Influence of Granite Cutting Waste Addition on the Geotechnical Parameters of Cohesive Soil. International Journal of Engineering Research and Advanced Technology , 5, 64-74. https://doi.org/10.31695/ijerat.2019.3459
Soni, S.R., Dahale, P.P. and Dobale, R.M. (2011) Disposal of Solid Waste for Black Cotton Soil Stabilization. International Journal of Advanced Engineering Sciences and Technologies , 8, 113-120.
Madurwar, K.V., Dahale, P.P. and Burile, A.N. (2013) Comparative Study of Black Cotton Soil Stabilization with RBI Grade 81 and Sodium Silicate. International Journal of Innovative Research in Science , Engineering and Technology , 2, 493-499.
Yin, Z., Lekalpure, R.L. and Ndiema, K.M. (2022) Experimental Study of Black Cotton Soil Stabilization with Natural Lime and Pozzolans in Pavement Subgrade Construction. Coatings , 12, Article 103. https://doi.org/10.3390/coatings12010103
Suzuki, M., Nakashita, A., Tsukuda, K. and Wakatsuki, Y. (2018) Applicability of Clinker Ash as Fill Material in Steel Strip-Reinforced Soil Walls. Soils and Foundations , 58, 16-33. https://www.sciencedirect.com/science/article/pii/S0038080617301531?via%3Dihub