Improvement of Unconfined Compressive Strength of Soft Clay using Microbial Calcite Precipitates

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Nawar Aqeel Ali
Mahdi O. Karkush

Abstract

The precipitation of calcite induced via microorganisms (MICP) is a technique that has been developed as an innovative sustainable ground improvement method utilizing ureolytic bacteria to soil strengthening and stabilization. Locally isolated Bacillus Sonorensis from Iraqi soil samples were found to have high abilities in producing urease. This study aims to use the MICP technique in improving the undrained shear strength of soft clay soil using two native urease producing bacteria that help in the precipitation of calcite to increase the cementation between soil particles. Three concentrations of each of the locally prepared Bacillus sonorensis are used in this study for cementation reagent (0.25M, 0.5M, and 1M) during the period of treatment. The results showed that the native isolated bacteria have high activity in bindings the soil particles together. The results of unconfined compressive strength tests showed that using MICP helps increase the undrained shear strength of soil by (3-5 times) for C11 types of native isolates, but the D11 was (1.5-2 times) because two types have different activity. This study's main finding is using the native urease-producing bacteria isolated from Iraqi soil in the MICP technique for the biocementation of soil, which is considered one of the sustainable techniques in the construction industry.

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“Improvement of Unconfined Compressive Strength of Soft Clay using Microbial Calcite Precipitates” (2021) Journal of Engineering, 27(3), pp. 67–75. doi:10.31026/j.eng.2021.03.05.
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How to Cite

“Improvement of Unconfined Compressive Strength of Soft Clay using Microbial Calcite Precipitates” (2021) Journal of Engineering, 27(3), pp. 67–75. doi:10.31026/j.eng.2021.03.05.

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