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Updated: Aug 15, 2026

Sandy Soil Improvement through Microbially Induced Calcite Precipitation (MICP) by Immersion
Published on: September 12, 2019
Experimental study on the reinforcement performance of unloading-damaged mudstone by microbial grouting
Yan Guo1, Huafeng Deng2, Yongqi Chen3
1Power China Hubei Electric Engineering Co., Ltd., Wuhan, Hubei, China.
Microbial induced calcite precipitation (MICP) and MICP-volcanic ash grouting effectively reinforce unloading-damaged mudstone, reducing swelling and increasing strength. MICP-volcanic ash offers superior performance by enhancing structural integrity and pore-fracture densification.
Area of Science:
- Geotechnical Engineering
- Materials Science
- Environmental Engineering
Background:
- Unloading damage during foundation excavation causes structural deterioration and swelling in mudstone.
- This damage significantly reduces mudstone strength and increases its susceptibility to water-induced swelling.
- Effective reinforcement strategies are crucial for the stability of such foundations.
Purpose of the Study:
- To investigate the effectiveness of microbial induced calcite precipitation (MICP) and MICP-volcanic ash grouting for reinforcing unloading-damaged mudstone.
- To systematically analyze the impact of these methods on swelling deformation, mechanical properties, and microscopic reinforcement mechanisms.
- To compare the reinforcement effects of MICP alone versus MICP combined with volcanic ash.
Main Methods:
- Preparation of mudstone specimens with varying degrees of unloading damage using triaxial unloading tests.
- Application of MICP and MICP-volcanic ash grouting as reinforcement treatments.
- Conducting physical-mechanical tests and microstructural analyses (e.g., SEM) to evaluate performance.
Main Results:
- Unloading damage significantly decreases mudstone strength and heightens swelling sensitivity.
- Both MICP and MICP-volcanic ash treatments effectively mitigate swelling and enhance strength.
- MICP-volcanic ash demonstrated superior improvements in residual strength (13.45%-20.61%) and peak strength (5.36%-9.45%) compared to MICP alone.
- Microstructural analysis revealed pore filling, crack sealing, and enhanced cementation by calcium carbonate precipitation.
Conclusions:
- MICP and MICP-volcanic ash grouting are viable green reinforcement techniques for damaged mudstone foundations.
- The addition of volcanic ash amplifies the benefits of MICP by improving microbial retention and pore structure densification.
- These findings provide valuable insights for improving the stability of red-bed mudstone foundations affected by unloading damage.
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