Experimental research on microbial dust suppressant for solidified dust based on MICP
In order to reduce the concentration of coal dust in open-pit coal mines, reduce and prevent the harm of coal dust, based on the microbial induced calcite precipitation solidification dust technology, the influence of environmental factors(temperature ...
Guangyi GAO
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Predicting the Tensile and Unconfined Compressive Strength of MICP-Treated Sands
Microbially Induced Carbonate Precipitation MICP has been studied over the last 20 years as a promising bio-mediated alternative to enhance soil mechanical performance. Multiple studies have investigated different MICP treatment techniques and their application to various coarse-grained soils.
Castro, Gloria M. +5 more
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Performance of Footing on MICP Induced Slope
Dr. S. S. Pusadkar +2 more
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The Application of MICP for Strengthening of Mine Tailings and Peats
Peat and mine tailings present significant challenges in geotechnical engineering due to their adverse mechanical properties. Peat, rich in organic materials, demonstrates considerable compressibility and permeability, leading to significant settlements during construction. Consequently, building on peat is fraught with risks because of its low bearing
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Study on the influence of cementation sequence on the mechanical properties and microstructure of MICP-modified ili loess. [PDF]
Shi G, Zhang A, Xue Y, Yang D, Zhou C.
europepmc +1 more source
Hydraulic characteristics and water immersion damage energy evolution mechanism of fractured rock repaired by microbial-induced calcite precipitation (MICP). [PDF]
Jiang B, Feng J, Chen S, Wu S.
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Mechanical and microstructural characteristics of calcareous sand reinforced by MICP-hollow fiber membrane treatment. [PDF]
Yang Y +5 more
europepmc +1 more source
Microbially induced calcite precipitation by a novel alkaliphilic Bacillus albus strain for sustainable self-healing bio-mortar with enhanced mechanical performance and durability. [PDF]
Ibrahim SM +4 more
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Soil strengthening via temperature-optimized MICP within 20 hours: a laboratory investigation. [PDF]
Tian A, Wong LH, Tang X, Hu M.
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Probiotics use environmentally friendly calcium lignosulfonate as an energy source to MICP-acting on concrete and soil remediation. [PDF]
Yan ZJ +10 more
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