American Journal of Materials Science and Engineering
ISSN (Print): 2333-4665 ISSN (Online): 2333-4673 Website: https://www.sciepub.com/journal/ajmse Editor-in-chief: Dr. SRINIVASA VENKATESHAPPA CHIKKOL
Open Access
Journal Browser
Go
American Journal of Materials Science and Engineering. 2022, 10(1), 8-15
DOI: 10.12691/ajmse-10-1-2
Open AccessArticle

Study of Correlations between Particle Size Analysis and Intrinsic Properties of Termite Mound Soils Cubitermes sp

Louis Ahouet1, 2, Sylvain Ndinga Okina3, Mondésire Odilon Ngoulou4 and Bockou Ekockaut Joseph Arsène1, 3

1Higher Institute of Architecture, Urbanism, Building and Public Works, Denis Sassou, Nguesso University, Congo

2Higher Polytechnic National School (ENSP), Marien Ngouabi University –Brazzaville, Congo;Building and Publics Works Control Office (BCBTP) – Brazzaville, BP 752;Materials and Energy Laboratory (LME), Faculty of Sciences and Technics, Marien, Ngouabi University Brazzaville, Brazzaville, Congo

3Higher Polytechnic National School (ENSP), Marien Ngouabi University –Brazzaville, Congo

4Materials and Energy Laboratory (LME), Faculty of Sciences and Technics, Marien, Ngouabi University Brazzaville, Brazzaville, Congo

Pub. Date: November 22, 2022

Cite this paper:
Louis Ahouet, Sylvain Ndinga Okina, Mondésire Odilon Ngoulou and Bockou Ekockaut Joseph Arsène. Study of Correlations between Particle Size Analysis and Intrinsic Properties of Termite Mound Soils Cubitermes sp. American Journal of Materials Science and Engineering. 2022; 10(1):8-15. doi: 10.12691/ajmse-10-1-2

Abstract

Inappropriate use of termite mounds soils Cubitermes sp can have negative effects on ecological processes. The objective of this study is to find correlations between intrinsic soil properties. The correlation selected is the one with the highest coefficient of determination and the smallest chi-sqr. The correlations obtained can help testing laboratories to reduce the amount of material to be transported and the number of tests to be performed when identifying materials in the preliminary study phase. The soils studied are clays (inactive and normal) of low to medium plasticity, containing minerals (kaolinite, illite, montmorillonite). The swelling potential of the soils varies from low, medium and high. The correlation between the blue value of the soil and the plasticity index is linear fit for all soils. The relationships between intrinsic soil properties are linear fits and Hyperbl and InvsPoly models with coefficients of determination of R2(0.703 - 1) and Chi-sqr X2 (0.00599 - 0.08941). From the analysis of particle size in relation to activity and clay fraction, ten parameters (LL, LP, PI, BVS, Ac, CEC, SSA, RA, Sc, CECA) can be predicted by the developed relationships.

Keywords:
intrinsic properties particle size analysis prediction termite mound soils Cubitermes Spp

Creative CommonsThis work is licensed under a Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/

References:

[1]  Dipankar Bera, Sudip Bera, Nilanjana Das Chatterjee. Termite mound soil properties in West Bengal, India. Geoderma Regional, Vol. 22, September 2020, e00293.
 
[2]  P.Joupet, N.Guileux, L Caner, S.Chintakunta, M.Ameline, R.R.Shanbhag. Influence of soil pedological properties on termite mound stability. Geoderma, Vol. 262, 15January 2016, pages 45-51.
 
[3]  Boyer, P. (1982) Quelques aspects de l’action des termites su sol sur les argiles. Clay Minerals 17, 453462.
 
[4]  Jouquet L., Mamou M., Lepage B.,Velde (2002). Effect of termites on clay minerals in tropical soils: fungus-growing termites as weathering agents, Eur. J. Soil Sci. 53 (2002) 1-7.
 
[5]  Louis Ahouet, Mondésire Odilon Ngoulou, Sylvain Ndinga Okina, Sorel Dzaba (2022). Geotechnical Characterization of Termite Mound Soils of Congo. Vol.12 No.3, September 2022.
 
[6]  Arshad, M.A. (1982) Influence of the termite Macrotermes michaelseni (Sjost) on soil fertility and vegetation in a semi-arid savanna ecosystem. Agro-Ecosystems 8, 47-58.
 
[7]  Arshad, M.A. (1981) Physical and chemical properties of termite mounds of two species of Macrotermes (Isoptera, Termitidae) and the surrounding soils of the semiarid savanna of Kenya. Soil Science 132, 161-174.
 
[8]  Garnier-Sillam, E. and Harry, M. (1995). Distribution of humic compounds in mounds of some soil-feeding termite species of tropical rainforests: its influence on soil structure stability. Insectes Sociaux 42, 167-185.
 
[9]  Isabel C. Vinhal-Freitas, Gilberto F. Corrêa, Beno Wendling, Lenka Bobulská, Adão S. Ferreira. Soil textural class plays a major role in evaluating the effects of land use on soil quality indicators. Ecological Indicators Volume 74, March 2017, Pages 182-190.
 
[10]  Lobry de Bruyn and Conacher (1990). The role of termite and ants in soil modification a rewiew. Soil Research, 28 (1), 55-93.
 
[11]  Enagbonma, B.J., Babalola, O.O. Unveiling Plant-Beneficial Function as Seen in Bacteria Genes from Termite Mound Soil. J Soil Sci Plant Nutr 20, 421-430 (2020).
 
[12]  Bignell D.E., Eggleton P. (2000). Termites in Ecosystems. Termites: Evolution, Sociality, Symbioses, Ecology, (Eds) Springer, Dordrecht, pp 363-387.
 
[13]  Trapnell C.G., Friend M.T., Chamberlain G.T. and Birch H.F. (1976). The effect of fire and termites on a Zambian woodland soil. Journal of Ecology,Vol. 64, No.2, pp.577-588.
 
[14]  Skemptom AW. The colloidal “Activity” of clays. Proceedings of the 3rdInternational Conference of soil Mechanics and foundation Engineering, 1953. (1) 57-60.
 
[15]  Dolinar, B., Trauner, L. Liquid Limit and Specific Surface of Clay Particles. Geotechnical testing journal, 2004 - astm.org, Volume 27, Issue 6. ASTM International.
 
[16]  Cerato A, Lutenegger AJ (2005) Activity, relative activity and specific surface area of fine – grained soils, Proceedings of the 16th International Conference of Soil Mechanics and Geotechnical Engineering (ICSMGE), 2.
 
[17]  Ahouet L., Ngoulou M.O., Ndinga Okina S., Kimbatsa F.T. (2022). Study of the relationship between the fundamental properties of fine soils and those of mathematical models of particle size distribution and geotechnical quantities. Arab J Geosci (2022) 15:1173.
 
[18]  NF P 11-300 (1992) French standard. Execution of earthworks. Classification of materials for use in the construction of embankments. Execution of earthworks. Classification of materials for use in the construction of embankments, AFNOR, 3-21.
 
[19]  NF P 94–056 (1996) French standard. Soils: recognition and tests. Analyse granulométrique. Method by dry sieving after washing, AFNOR, 5-15.
 
[20]  NF P94-057 (1992) French standard. Soils: recognition and tests. Granulometric analysis. Sedimentation method, AFNOR, 4-17.
 
[21]  NF P94-051 (1993) French standard. Soils: recognition and tests. Determination of Atterberg limits. Limit of liquidity at the cup - limit of plasticity at the roller. AFNOR, 4-14.
 
[22]  NF P94-068 (1998). French standard. Soils: Investigation and testing – Measuring of the methylene blue adsorption capacity of a rocky soil. Determination of the methylene blue of a soil by means of the strain test, October 1998.
 
[23]  Louis Ahouet, Sorel Dzaba, Brice Dublin Mbossa Elenga, Sylvain Ndinga Okina, Fabien T. Kimbatsa. Characterization of the activity, mineralogy and correlations between the properties of clayey soils. Vol. 10 No. 5, September 2022.
 
[24]  Quigley R.M., Sethis A.J., Boonsinsuk P., Sheeren D.E and Yong R.N. (1985). Geologic controls on soil composition and properties, Lake Ojibway Clay Plain, Matagami, Quebec. Canadian Geotechnical Journal. (22) 491-500.
 
[25]  Mitchell JK (1976) Fundamentals of soil behavior. John Wiley and Sons, New York.
 
[26]  Locat L, Tanaka H, Tan TS, Desari GR, Lee H (2003). Natural soils: geotechnical behavior and geologic knowledge. Charact Eng Properties Nat Soil 1: 3-28.
 
[27]  Y. Millogo, M. Hajjaji, J.C. Morel. “Physical properties, microstructure and mineralogy of termite mound material considered as construction materials”, Applied Clay Science 52 (2011) 160-164, pp 1-5, 2011.
 
[28]  Sié Kam et al., 2009. Céramiques d’argile du Burkina Faso utilisées en construction immobilière. J. soc. Ouest-Afr. Chim. (2009) 027; 55-62.