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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Microbially Induced Carbonate Precipitation for Seepage-Induced Internal Erosion Control in Sand-Clay Mixtures
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Microbially Induced Carbonate Precipitation for Seepage-Induced Internal Erosion Control in Sand-Clay Mixtures

机译:微生物诱导的碳酸盐沉淀用于砂土混合物中渗流诱导的内部侵蚀控制

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摘要

Earth embankment dams are one of the most commonly constructed hydraulic infrastructures worldwide. One mode of dam failure is piping through the embankment, which is initiated by internal erosion of soil particles inside dams. In this study, the applicability of microbially induced carbonate precipitation (MICP) for internal erosion control is examined in the laboratory using sand-kaolin mixtures of different particle sizes. A series of internal erosion tests are conducted using a newly designed rigid-wall column erosion test apparatus, which allows independent control of MICP treatment. Erosion rate/coefficient, volumetric change, and permeability are characterized during the internal erosion process. It is found that MICP treatment facilitates the reduction of erosion and volumetric contraction of sand-clay mixtures investigated in the current study. Carbonate precipitation increases the erosion resistance of sand-clay mixtures by absorbing/coating fine particles directly and bridging the contacts of coarse particles. An improved effectiveness of internal erosion control is observed in the sand-clay mixture having a higher gap ratio. This observation is due to the inherently large porosity, which hosts more carbonate precipitation. The difficulty of bacteria and chemical injection in sand-clay mixtures triggers the flushing of produced calcium carbonate, which reduces the overall carbonate content and MICP treatment efficiency. The spatial distribution of precipitation within the soil is also altered.
机译:土堤坝是全球最常用的水利基础设施之一。大坝破坏的一种模式是通过堤坝的管道,这是由大坝内部土壤颗粒的内部侵蚀引起的。在这项研究中,在实验室中使用不同粒径的沙子-高岭土混合物检查了微生物诱导的碳酸盐沉淀(MICP)在内部侵蚀控制中的适用性。使用新设计的刚性壁柱腐蚀测试设备进行了一系列内部腐蚀测试,该设备可独立控制MICP处理。在内部腐蚀过程中表征了腐蚀速率/系数,体积变化和渗透率。已经发现,MICP处理有助于减少在当前研究中研究的砂土混合物的侵蚀和体积收缩。碳酸盐沉淀物通过直接吸收/涂覆细颗粒并桥接粗颗粒的接触而提高了砂土混合物的抗腐蚀性。在具有较高间隙比的砂土混合物中,观察到内部侵蚀控制的改进效果。该观察结果是由于固有的大孔隙率而导致更多的碳酸盐沉淀。砂土混合物中细菌和化学物质注入的困难触发了产生的碳酸钙的冲洗,从而降低了总碳酸盐含量和MICP处理效率。土壤中降水的空间分布也发生了变化。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2017年第3期|04016100.1-04016100.14|共14页
  • 作者单位

    Dept. of Engineering, Univ. of Cambridge, Trumpington St., Cambridge CB2 1PZ, U.K;

    Dept. of Civil and Environmental Engineering, Univ. of California-Berkeley, Berkeley, CA 94720;

    Cathie Associates SA/NV, 1831 Diegem, Belgium formerly, Shaijah Fellow, Dept. of Engineering, Univ. of Cambridge, Cambridge CB2 1PZ, U.K;

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