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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Influence of cementation level on the strength behaviour of bio-cemented sand
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Influence of cementation level on the strength behaviour of bio-cemented sand

机译:胶结水平对生物粘液砂强度行为的影响

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摘要

Microbially induced calcite precipitation (MICP) is used increasingly to improve the engineering properties of granular soils that are unsuitable for construction. This shows MICP technique significant advantages such as low energy consumption and environmentally friendly feature. The objective of the present study is to assess the strength behaviour of bio-cemented sand with varying cementation levels, and to provide an insight into the mechanism of MICP treatment. A series of isotropic consolidated undrained compression tests, calcite mass measurement and scanning electron microscopy tests were conducted. The experimental results show that the strength of bio-cemented sand depends heavily on the cementation level (or calcite content). The variations of strength parameters, i.e. effective friction angle phi' and effective cohesion c', with the increase in calcite content can be well evaluated by a linear function and an exponential function, respectively. Based on the precipitation mechanism of calcite crystals, bio-clogging and bio-cementation of calcite crystals are correlated to the amount of total calcite crystals and effective calcite crystals, respectively, and contributed to the improvement in the effective friction angle and effective cohesion of bio-cemented sand, separately.
机译:微血上诱导的方解石沉淀(MICP)越来越多地用于改善不适合施工的粒状土壤的工程性质。这显示了MICP技术的显着优势,例如低能量消耗和环保特征。本研究的目的是评估生物粘合沙的强度行为,具有不同的胶结水平,并提供对MICP治疗机制的洞察。进行了一系列各向同性固结的不驱涉压缩试验,方解石质量测量和扫描电子显微镜测试。实验结果表明,生物粘合砂的强度大幅取决于胶结水平(或方解石含量)。强度参数的变化,即有效的摩擦角PHI'和有效内聚力C',通过线性函数和指数函数分别可以通过线性函数和指数函数进行很好地评估。基于方解石晶体的沉淀机制,切除晶体的生物堵塞和生物粘合分别与总方解石晶体和有效方解石晶体的量相关,有助于改善生物有效摩擦角和有效内聚力被分开的沙子。

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