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Biogrouting coarse materials using soil-lift treatment strategy

机译:利用土壤提拉技术对粗粒材料进行生物灌浆

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This paper investigates the feasibility of using a soil-lift biogrouting treatment strategy to improve the mechanical properties of coarse sand with the view of applying it to stone columns - sand piles and rammed earth columns type of applications. A two-phase percolation approach was adopted in this study that included percolating a bacterial suspension Sporosarcina pasteurii in the first phase and a cementation solution in the second phase. This process was repeated every two treatments. The study reveals that an increase in the number of soil lifts negatively influenced the mechanical properties of the biocemented coarse sand. However, the minimum strength and stiffness achieved (2.8 MPa) in this study was sufficient to mitigate slumping of a soil column that may occur during installation or excessive radial expansion. Furthermore, it is shown that a single lift treatment can lead to a very high increase in strength and stiffness (up to 8.9 MPa and 2.3 GPa, respectively). However, calcite distributions within biocemented soil columns piles were quite heterogeneous with increasing number of soil-lift treatments. Soil-lift treatment can be seen as a practical strategy that can be used to inject treatment liquids in deeper depths, such as in soil columns piles.
机译:本文探讨了采用土壤举生生物注浆处理策略来改善粗砂的机械性能的可行性,并考虑将其应用于石柱-沙桩和夯土柱的应用类型。在这项研究中采用了两阶段的渗滤方法,包括在第一阶段渗滤细菌悬浮的巴氏孢子菌,在第二阶段渗滤胶结溶液。每两个处理重复此过程。研究表明,土壤扬程数量的增加对生物胶结粗砂的机械性能产生了负面影响。但是,在这项研究中达到的最小强度和刚度(2.8 MPa)足以减轻安装或过度径向扩张过程中可能发生的土柱塌陷。此外,已表明,一次提升处理可导致强度和刚度的极大提高(分别高达8.9 MPa和2.3 GPa)。然而,随着土壤剥离处理的增加,方解石在生物水泥土桩中的分布非常不均匀。提土处理可以看作是一种实用的策略,可用于在更深的深度(例如在土桩中)注入处理液。

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