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首页> 外文期刊>Nature environment and pollution technology >Exploring an Environmentally Friendly Microbially Induced Calcite Precipitation (MICP) Technology for Improving Engineering Properties of Cement-Stabilized Granite Residual Soil
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Exploring an Environmentally Friendly Microbially Induced Calcite Precipitation (MICP) Technology for Improving Engineering Properties of Cement-Stabilized Granite Residual Soil

机译:探索环境友好的微生物诱导的方解石沉淀(MICP)技术,用于改善水泥稳定花岗岩残留土工程性能

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This study explored Microbially Induced Calcite Precipitation (MICP) technology to improve the engineering properties [i.e., unconfined compressive strength (UCS)] of granite residual cemented-soil through calcite precipitation. The influence of age and cement mixing ratio on strength, stiffness and the stress-strain relationship of MICP induced calcite precipitation in granite residual cemented-soil was investigated. Scanning electron microscope (SEM) was used to analyse the microstructure characteristics of the cemented-soil. Based on the results, the cemented granite residual soil reinforcement mechanism was proposed. The following conclusions were obtained: (1) MICP technology can significantly enhance and improve the engineering properties such as strength, stiffness and toughness of cemented-soil. Compared with the control group, the maximum growth rate of the test group was 87.5%, and the maximum growth rate of the elastic modulus was 141.18%; (2) Soil particles were cemented through MICP technology, making the cemented-soil surface denser; (3) The MICP technology makes the cemented-soil treatment method more sustainable for its use in improving the stability of geo-structures.
机译:本研究探讨了微生物诱导的方解石沉淀(MICP)技术,通过方解石沉淀改善了花岗岩残留碳酸土壤的工程性质[即,非整合的抗压强度(UCS)]。研究了时代和水泥混合比对花岗岩残余胶状土壤中麦克白诱导的方解石沉淀的强度,刚度和应力 - 应变关系的影响。扫描电子显微镜(SEM)用于分析粘液土的微观结构特性。基于结果,提出了胶结花岗岩残留土加固机制。获得了以下结论:(1)MICP技术可以显着增强和改善胶结土的强度,刚度和韧性等工程性质。与对照组相比,试验组的最大生长速率为87.5%,弹性模量的最大生长速率为141.18%; (2)土壤颗粒通过MICP技术巩固,使粘合的土壤表面密集; (3)MICP技术使水泥土处理方法更具可持续性,以改善地理结构的稳定性。

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