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Study on healing technique for weak interlayer and related mechanical properties based on microbially-induced calcium carbonate precipitation

机译:基于微生物诱导的碳酸钙沉淀的弱层间和相关机械性能治疗技术研究

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摘要

The weak interlayer refers to the filling material in shear belts or large-scale structural planes, which is usually composed of soil, fine sand and gravels. It is prone to argillization when encountering water and its mechanical strength and stiffness are generally low, which has adverse effects on the stability of underground structures. In recent years, research on reinforcement techniques for weak interlayers has been a hot topic in geotechnical field. As a new reinforcement method for structural planes, the microbial healing technique has attracted a lot of attention. In this paper, a study on the healing technique for weak interlayer based on microbially induced calcium carbonate precipitation (MICP) and related mechanical properties was conducted for the interlayer shear belt at Baihetan Hydropower Station in China. First, Sporosarcina pasteurii was activated in laboratory. Reinforcement of the weak interlayer was realized by utilizing calcium carbonate precipitation on the weak interlayer. Continuous monitoring of the precipitates on the weak interlayer by XRD and SEM indicated that the precipitates on the weak layer were microbially induced calcium carbonate. Its crystals were irregular fish scale-shaped cubes with size in the range of 5~20μm. With favorable crystal growth, the crystals and the particles of the weak interlayer were cemented together. Finally, the mechanical properties of the healed weak interlayer were tested and the variations of uniaxial compressive strength, shear strength and triaxial compressive strength with bacteria concentration were discussed. The test results indicated that the maximum uniaxial compressive strength, peak shear strength and triaxial compressive strength can be increased by 149%, 162% and 119%, respectively, which subsequently improve the overall strength of the shear zone or structural plane. This can provide a new idea for soft ground reinforcement in underground projects.
机译:弱层间是指在剪切带或大型结构面的填充材料,其通常由土壤,细砂和砾石的。遇到水和其机械强度和刚度通常很低,这对地下结构的稳定性产生不利影响时,很容易产生泥化。近年来,在加固技术薄弱夹层的研究一直是岩土工程领域的热门话题。至于结构面的一种新的加固方法,微生物修复技术已经吸引了大量的关注。在本文中,在基于微生物诱导的碳酸钙沉淀(MICP)和相关的机械性能弱的层间的愈合术了一项研究,在白鹤滩水电站在中国夹层剪切带进行。首先,Sporosarcina巴斯德实验室被激活。弱层间的增强件是通过利用在弱层间碳酸钙沉淀实现。通过XRD和SEM对层间弱的析出物的连续监测表明,弱层上的沉淀物,微生物诱导碳酸钙。其晶体是不规则鱼鳞形立方体与在5〜20μm的范围内的大小。具有有利的晶体生长,晶体和弱中间层的粒子胶合在一起。最后,愈合弱中间层的机械性能进行了测试,并进行了讨论的单轴压缩强度,剪切强度和三轴抗压强度与细菌浓度的变化。测试结果表明,最大单轴抗压强度,峰值剪切强度和三轴抗压强度可以分别通过149%,162%和119%,而增加,其随后改善剪切区或结构面的整体强度。这可以提供对地下工程软地基加固了新的思路。

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