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Improving the Shear Strength of Quartz Sand using the Microbial Method

机译:使用微生物方法改善石英砂的剪切强度

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摘要

An increase in urban population and the reduced number of suitable lands for construction projects have necessitated the need for ground improvement methods with no environmentally detrimental effects. Microbial-induced calcite precipitation (MICP) is a relatively environmentally friendly method for soil regeneration. In the present paper, X-ray diffraction (XRD) and scanning electron microscopy (SEM) analyses were performed to investigate the type and method of cement formation in loose quartz sand with different densities stabilized using bacteria. The results showed that the highest content of calcium carbonate cement was produced in the sample with the lowest density. Moreover, after microbial stabilization, the shear strength measured in the direct shear test was increased in the specimen with a lower density. We observed an increase in shear strength from 0.63kg/cm(2) before injection for loose sand ( = 1.5g/cm(3)) to 3.92kg/cm(2) after injection. In addition, the effect of injection time was investigated and found that shear strength in the two-stage injection per day is greater than that in one- and three-stage injections per day. With prolonging the injection time from one to five days, shear strength was significantly increased from 2.07 to 4.54kg/cm(2). Furthermore, prolonging the bacterial treatment period led to a significant increase in the produced carbonate cement and, consequently, enhanced soil shear strength.
机译:城市人口的增加和建筑项目的合适土地数量减少需要对没有环境不利影响的地面改进方法。微生物诱导的方解石沉淀(MICP)是一种相对环保的土壤再生方法。在本文中,进行X射线衍射(XRD)和扫描电子显微镜(SEM)分析以研究松散石英砂中的水泥形成的类型和方法,其不同密度稳定使用细菌。结果表明,在具有最低密度的样品中在样品中产生最高碳酸钙水泥的含量。此外,在微生物稳定化之后,在直接剪切试验中测量的剪切强度在具有较低密度的试样中增加。在注射后注射松散的砂(= 1.5g / cm(3))至3.92kg / cm(2)之前,我们观察到从0.63kg / cm(2)的剪切强度的增加。此外,研究了注射时间的效果,发现每天两步喷射中的剪切强度大于每天一次和三级注射的剪切强度。通过延长从一到五天的喷射时间,剪切强度从2.07显着增加到4.54kg / cm(2)。此外,延长细菌治疗期导致生产的碳酸盐水泥的显着增加,并因此增强了土壤剪切强度。

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