Improvement of the Geotechnical Properties of the Soil of Lime-Treated Cubitermes Mound Soil
- 1 Laboratoire des Matériaux et Energies, Faculté des Sciences et Techniques, Université Marien Ngouabi, Brazzaville, Congo
- 2 Bureau de Contr?le du Batiment et Travaux Publics, Brazzaville, Congo
- 3 Laboratoire des Matériaux et Energies, Faculté des Sciences et Techniques, Université Marien Ngouabi, Brazzaville, Congo
- 4 Ecole Nationale Supérieure Polytechnique, Université Marien Ngouabi, Brazzaville, Congo
- 5 Ecole Normale Supérieure, Université Marien Ngouabi, Brazzaville, Congo
Abstract
This work consisted in determining the geotechnical properties of the soil of the Cubitermes termite mound soil treated with lime for use in road construction in accordance with the relevant standards. The raw soil is composed of 29.45% clay, 45.12% silt and 25.43% sand, and its granulometric curve is above the relevant standard curve. The addition of lime up to 9% decreases the fine fraction content from 75% to 60%, and the maximum dry density from 1.62 t/m 3 to 1.36 t/m 3 . The reduction of the fine fraction should reduce the soil sensitivity to water, and the emission of dust from the road. The compressive strength of the raw soil (3.89 MPa) is higher than that of most cohesive soil, and is probably one the causes of the longevity of the rural road paved with this soil. Treated soil with 6% in lime content has the highest compressive strength (5.95 MPa), and the lowest deformation at failure. Until 28 days, the improvement of the compressive upon the curing time is almost the same for untreated and treated termite mound soils. Thus, this improvement could be mostly attributed to the drying of the samples instead to the pozzolanic reactions. Besides, adding lime also enhances the shear strength of soil . Therefore, adding lime up to 6% in content to the termite mound soil should improve its behavior as surface roads.
- (2017) National Development Plan 2018-2022 of the Republic of Congo.
- Riverson, J., Gaviria, J. and Thriscutt, S. (2002) Rural Roads in SubSaharan Africa, Lessons from World Bank Experience. World Bank, Washington DC, Technical Paper, No. 141.
- Sangaré, M. and Atiase, S. (1991) Synthesis of Data on the Maintenance and Rehabilitation of Rural Roads in West and Central Africa. African Development Support Project No. 698-0464.28.
- Molenaar, A.A.A. (2013) Durable and Sustainable Road Constructions for Developing Countries. Procedia Engineering, 54, 69-81. https://doi.org/10.1016/j.proeng.2013.03.007
- Cocks, G., Keeley, R., Leek, C., Foley, P., Bond, T., Crey, A., Paige-Green, P., Emery, S., Clayton, R., Iness and Les Marchant, M.D. (2015) The Use of Naturally Occurring Materials for Pavements in Western Australia. Australian Geomechanics, 50, 43-106.
- Weinert, H.H. (1980) The Natural Road Construction Materials of South Africa. Academica, Pretoria, Cape Town.
- Biswal, D.R., Sahoo, U.C. and Dash, S.R. (2016) Characterization of Granular Lateric Soils as Pavement Material. Transportation Geotechnics, 6, 108-122. https://doi.org/10.1016/j.trgeo.2015.10.005
- Mahalinga-Iyer, U. and Williams, D.J. (1997) Properties and Performance of Lateritic Soil in Road Pavements. Engineering Geology, 46, 71-80. https://doi.org/10.1016/S0013-7952(96)00096-8
- Paige-Green, P., Pinard, M. and Netterberg, F. (2015) A Review of Specifications for Lateritic Materials for Low Volume Roads. Transportation Geotechnics, 5, 86-98. https://doi.org/10.1016/j.trgeo.2015.10.002
- Abe, S.S., Yamamoto, S. and Wakatsuki, T. (2009) Soil-Particle Selection by the Mound-Building Termite (Macrotermes bellicosus) on a Sandy Loam Soil Catena in a Nigerian Tropical Savanna. Journal of Tropical Ecology, 25, 449-452. https://doi.org/10.1017/S0266467409006142
- Jouquet, P., Tessier, D. and Lepage, M. (2004) The Soil Structural Stability of Termite Nests: Role of Clays in Macrotermes bellicosus (Isoptera, Macrotermitinae) Mound Soils. European Journal of Soil Biology, 40, 23-29. https://doi.org/10.1016/j.ejsobi.2004.01.006
- Attoh-Okine, N.O. (1995) Lime Treatment of Laterites and Gravel Revisited. Construction and Building Materials, 9, 283-287. https://doi.org/10.1016/0950-0618(95)00030-J
- SETRA/LCPC (2007) Technical Guide Soil Treatment with Lime and/or Hydraulic Binders—Roadbed Application.