Natural Resources

Natural Resources

ISSN Print: 2158-706X
ISSN Online: 2158-7086
www.scirp.org/journal/nr
E-mail: nr@scirp.org
"The Reduction of the Permeability of a Lateritic Soil through the Application of Microbially Induced Calcite Precipitation"
written by Anthony Smith, Martin Pritchard, Alan Edmondson, Shafakat Bashir,
published by Natural Resources, Vol.8 No.5, 2017
has been cited by the following article(s):
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[1] A critical review on microbially induced carbonate precipitation for soil stabilization: The global experiences and future prospective
Pedosphere, 2023
[2] Effect of microbial-induced calcite precipitation towards strength and permeability of peat
Bulletin of Engineering Geology …, 2022
[3] Physical-mechanical properties of microbially induced calcite precipitation-treated loess and treatment mechanism
Journal of Mountain Science, 2022
[4] Effective use of microbes in waste soil stabilisation considering natural temperature variations
Geomechanics and Geoengineering, 2022
[5] The effect of bacillus coagulans and moulding water content on the unconfined compressive strength of lateritic soil
Engineering Science & …, 2022
[6] Experimental Study on Mechanical Properties of Root–Soil Composite Reinforced by MICP
Materials, 2022
[7] Biostabilization techniques and applications in Civil Engineering: State-of-the-Art
Construction and Building …, 2021
[8] Solid waste landfills management, and its relation with groundwater contamination
2021
[9] Review on geotechnical engineering properties of sands treated by microbially induced calcium carbonate precipitation (MICP) and biopolymers
2020
[10] An experimental study on the bio-cementation and bio-clogging effect of bacteria in improving weak dredged soils
2020
[11] Unconfined Compressive Strength Testing of Bio‑cemented Weak Soils: A Comparative Upscale Laboratory Testing
2020
[12] A Review on the Microbial Induced Carbonate Precipitation (MICP) for Soil Stabilization
2020
[13] A Review on the Microbial Induced Carbonate Precipitation MICP for Soil Stabilization
2020
[14] Bioprecipitation of calcium carbonate mediated by ureolysis: A review
2020
[15] Unconfined compressive strength testing of bio-cemented weak soils: a comparative upscale laboratory testing
Arabian Journal for Science and Engineering, 2020
[16] Stimulation of Native Microorganisms for Improving Loose Salty Sand
2019
[17] Effect of surcharge load on Microbial-Induced Calcite Precipitation (MICP) treatment of tropical peat
2019
[18] Biologically Induced Cementation for Soil Stabilisation
2019
[19] Evaluation of vege-grout treated slope by electrical resistivity
2018
[20] Microbial Calcification: An Insight Into Carbonate Precipitation And Its Emerging Influence In Diverse Applications
2018
[21] Advancement In Microbial Soil Treatment For Enhancing Geotechnical Properties: A Review
R Deka
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