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首页> 外文期刊>African Journal of Biotechnology >Cementation in a matrix of loose sandy soil using biological treatment method
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Cementation in a matrix of loose sandy soil using biological treatment method

机译:生物处理法在松散砂土基质中固结

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Man-made materials varying from cement-based to chemical-based have been injected into soils to improve their engineering properties (shear strength, compressibility, permeability, bearing capacity etc.). Soil type in general plays important role in determination of treatment material and method. Materials used for soil treatment might have side effects in terms of air pollution, soil or water contamination etc. during manufacturing or application. An alternative, environmentally friendly soil treatment method that is based on?the?use of bacteria present in soils and named Biological Treatment Method (BTM) has been used by researchers to bond particles of loose sandy soils via creation of calcite (CaCO3) generated by bacteria using urea to influence the precipitation of calcium carbonate. This study presents the results of bacterial induced cementation (BIC) in matrix of loose sandy soil. A bacterium used in this study is?Sporosarcina pasteurii?that is naturally present in soils and is aerobic type. The bacteria grown in laboratory environment were injected to the matrix of loose sandy soil. Subsequent nutrient mediums were introduced to specimens to accelerate the development of cementation level. Number of bacteria, pH level, temperature and amount of CaCO3were measured during the duration of testing. Images of Scanning Electron Microscope (SEM) showed that creation of cementation from precipitation of CaCO3?on the surface and pores of soil matrix were observed for only sand samples into which nutrient was flushed on sequence of arbitrary time.
机译:从水泥基到化学基的各种人造材料已被注入土壤中,以改善其工程特性(抗剪强度,可压缩性,渗透性,承载能力等)。通常,土壤类型在确定处理材料和方法中起着重要作用。用于土壤处理的材料在制造或应用过程中可能会对空气污染,土壤或水污染等产生副作用。研究人员使用了另一种基于土壤中细菌的利用的环保土壤处理方法,称为生物处理方法(BTM),该方法通过产生由方解石产生的方解石(CaCO3)来粘结松散的沙土颗粒。细菌利用尿素影响碳酸钙的沉淀。这项研究提出了在松散的沙质土壤基质中细菌诱导的胶结作用(BIC)的结果。这项研究中使用的细菌是“帕氏孢子虫”,它自然存在于土壤中并且是有氧类型。将实验室环境中生长的细菌注入到松散的沙土基质中。随后的营养培养基被引入到标本中以加速胶结水平的发展。在测试过程中测量了细菌数量,pH值,温度和CaCO3含量。扫描电子显微镜(SEM)的图像显示,仅在任意时间顺序将养分冲刷到沙土样品中,才观察到CaCO3在土壤基质表面和孔中的沉淀而形成胶结作用。

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