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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Unconfined Compressive Strength and Visualization of the Microstructure of Coarse Sand Subjected to Different Biocementation Levels
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Unconfined Compressive Strength and Visualization of the Microstructure of Coarse Sand Subjected to Different Biocementation Levels

机译:不同生物固结水平下粗砂的无侧限抗压强度和微观结构的可视化

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摘要

Biocementation processes rely on microbial-induced calcite precipitation (MICP), which is a naturally occurring biochemical process. Biocement materials are a form of environmental cementitious agents used to improve the mechanical properties of granular soils by physically binding soil particles together. Efficient improvement of the macromechanical behavior of coarse sand treated by various amounts of biocement materials requires an in-depth understanding of its microstructure. This paper examined the effect of a number of bacterial suspension and cementation solution flushes on the macromechanical behavior of coarse sand. Also, X-ray computed tomography (XCT), scanning electron microscopy (SEM), and energy dispersive spectroscopy (EDS) were used to investigate changes occurring at microlevels. The results show that compressive strength increased with an increase of biocement materials, and the maximum compressive strength achieved was around 14 MPa. The microscopic investigations were linked to the macromechanical changes, providing unique insight into the causation of the changes. Furthermore, several common soil properties (calcium carbonate content, dry density, void ratio, and porosity) were successfully identified using the XCT technique.
机译:生物胶结过程依赖于微生物引起的方解石沉淀(MICP),这是自然发生的生化过程。生物水泥材料是一种环境胶凝剂,用于通过将土壤颗粒物理粘合在一起来改善粒状土壤的机械性能。要有效地改善通过各种数量的生物水泥材料处理过的粗砂的宏观力学性能,需要深入了解其微观结构。本文研究了许多细菌悬浮液和胶结溶液冲洗对粗砂宏观力学行为的影响。此外,X射线计算机断层扫描(XCT),扫描电子显微镜(SEM)和能量色散光谱(EDS)用于研究微观水平的变化。结果表明,抗压强度随生物水泥材料的增加而增加,最大抗压强度约为14 MPa。微观研究与宏观力学变化有关,从而提供了对变化原因的独特见解。此外,使用XCT技术成功鉴定出几种常见的土壤特性(碳酸钙含量,干密度,孔隙率和孔隙率)。

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