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Strength of lime-cement stabilized tropical lateritic clay contaminated by heavy metals

Saeed, Khitam Abdulhussein and Kassim, K. A. and Nur, Hadi and Mohd. Yunus, Nor Zurairahetty (2015) Strength of lime-cement stabilized tropical lateritic clay contaminated by heavy metals. KSCE Journal of Civil Engineering, 19 (4). pp. 887-892. ISSN 1226-7988

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Official URL: http://dx.doi.org/10.1007/s12205-013-0086-6

Abstract

Cement and lime are considered as stabilizers of contaminated land since they can reduce the leachability of contaminants. The contaminated soils can generally have higher strength after stabilization. However, the presence of heavy metal contaminants in soil interferes with stabilizer hydration which inhibits strength development in treated soils. Stabilizing products also have different strength properties due to heavy metals that affect levels of chemical fixation in different contaminated soil mixes. This paper presents an experimental study that evaluates strength development in cement-lime stabilized/solidified soils contaminated with either copper or zinc. Unconfined compressive strength was used to determine the suitability of cement and lime stabilization of contaminated laterite clay soils. Control samples (cement-lime stabilized soils without heavy metals) were prepared for comparison. Results confirmed the interference of heavy metals in the process of cement and lime hydration as a direct reflection of varied strength developments in tested soil samples. It was found that metal concentration, stabilizer content, type of stabilizer, and heavy metal type were factors that affected stabilizer hydration and strength development. The most significant ones of these were the type of stabilizer used and heavy metal concentration.

Item Type:Article
Uncontrolled Keywords:contamination, heavy metals
Subjects:T Technology > TA Engineering (General). Civil engineering (General)
Divisions:Civil Engineering
ID Code:56145
Deposited By: Muhamad Idham Sulong
Deposited On:16 Nov 2016 00:51
Last Modified:16 Nov 2016 00:51

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