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Heave Studies on Fly Ash-Stabilised Expansive Clay Liners

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Abstract

Clay liners or compacted earthen barriers are important barrier materials used for preventing contaminant transport through soils. A low hydraulic conductivity (k) is a significant parameter that governs the design and construction of clay liners. Compacted expansive clays, which are montmorillonite clays, also have a very low hydraulic conductivity (k). When expansive clays are blended with fly ash, an industrial waste, the hydraulic conductivity (k) further reduces as the ash-clay blends result in increased dry densities at increased fly ash contents. Hence, fly ash-stabilised expansive clay can also be proposed as a unique clay liner material. As expansive clays undergo heave when they come into contact with water, it is necessary to study the heave behaviour of fly ash-stabilised expansive clay liners. This paper presents heave studies on fly ash-stabilised expansive clay liners. Fly ash in different contents by dry weight of the expansive clay was added to the clay, and the ash-clay blend was compacted as a liner overlying a natural field soil layer. Compacted lateritic clay was used for simulating the natural field soil into which contaminants migrate. Calcium chloride (CaCl2) solution of varying concentration (5, 10, 20, 50, 100 and 500 mM) was used as the permeating fluid in the heave studies. The rate of heave and the amount of heave of the fly ash-stabilised expansive clay liners were monitored. Deionised water (DIW) was also used as inundating fluid for comparative study. Heave (mm) decreased with increase in solute concentration for all fly ash contents. For a given solute concentration, heave decreased up to a fly ash content of 20 % and thereafter it increased when the fly ash content was increased to 30 %. Heave of the fly ash-stabilised expansive clay liners was correlated with their permeability, liquid limit (LL) and free swell index (FSI) pertaining to the respective fly ash content and CaCl2 concentration.

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References

  • Chen FH (1988) Foundations on Expansive Soils. Elsevier Scientific Publishing Co, Amsterdam

    Google Scholar 

  • Gourley CS, Newill D, Shreiner HD (1993) Expansive soils: TRL’s research strategy. In: Proccedings 1st international symposium on engineering characteristics of arid soils, London

  • Holtz WG, Gibbs HJ (1956) Engineering properties of expansive clays. Trans Am Soc Civ Eng 121:641–677

    Google Scholar 

  • Kolstad D, Benson C, Edil T (2004) Hydraulic conductivity and swell of nonprehydrated GCLs permeated with multi species inorganic solutions. J Geotech Geoenviron Eng 130(12):1236–1249

    Article  Google Scholar 

  • Martin RT (1960) Adsorbed water on clay: a review. In: Clays and clay minerals, vol 9, pp 28–70

  • Phanikumar BR (1997) A study of swelling characteristics of and granular pile anchor foundation system in expansive soils. Ph.D. thesis, Jawaharlal Nehru Technological University, Hyderabad, India

  • Phanikumar BR, Sharma RS (2004) Effect of fly ash on engineering properties of expansive soils. J Geotech Geoenviron Eng 130(7):764–767

    Article  Google Scholar 

  • Phanikumar BR, Sharma RS, Rao AS, Madhav MR (2004) Granular pile-anchor (GPAs) foundation system for improving the engineering behaviour of expansive clay beds. ASTM Geotech Test J 133(5):531–538

    Google Scholar 

  • Shackelford C, Benson C, Katsumi T, Edil T, Lin L (2000) Evaluating the hydraulic conductivity of GCLs permeated with non-standard liquids. Geotext Geomembr 18:133–161

    Article  Google Scholar 

  • Umashankar M, Phanikumar BR (2012) “Correlation studies on index properties of fly ash-stabilised expansive clay liners. Geomech Geoengin An Int J 7(4):283–291

    Article  Google Scholar 

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Correspondence to B. R. Phanikumar.

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Phanikumar, B.R., Uma Shankar, M. Heave Studies on Fly Ash-Stabilised Expansive Clay Liners. Geotech Geol Eng 35, 111–120 (2017). https://doi.org/10.1007/s10706-016-0088-5

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  • DOI: https://doi.org/10.1007/s10706-016-0088-5

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