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Evaluation of multiple soil improvement techniques based on microbial functions

机译:基于微生物函数的多种土壤改善技术评价

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In this paper, we propose several soil improvement techniques based on microbial functions. These techniques can control soil strength and permeability. The ureolytic bacterium, Bacillus pasteurii, was used to accelerate the precipitation of calcium carbonate(CaCO_(3)). Soil permeability can be controlled by 2 types of microbial functions; type 1 metabolizes a carbon source aerobically and anaerobically to generate the carbon dioxide and enhance the precipitation of CaCO_(3), and type 2 produces organic acids, depending on the type of microorganism, by degrading a carbon source. The organic acid dissolve the carbonate precipitates, i.e.. cause decalcification, and thus, restore soil permeability. We attempt to explain the scheme of these methods, and illustrate the results of each experiment. Each technique controls the physical property of soil and can be beneficial in reducing construction costs and lowering environmental impact.
机译:本文提出了基于微生物功能的几种土壤改进技术。这些技术可以控制土壤强度和渗透性。 ureolytic细菌,杆菌脊椎菌,用于加速碳酸钙的沉淀(CaCO_(3))。土壤渗透率可由2种类型的微生物功能控制; 1型通过降解碳源,通过降解碳源,使碳源能够使碳源和厌氧上以产生二氧化碳,并增强CaCO_(3)的沉淀,并根据微生物的类型,通过降解碳源,产生有机酸。有机酸溶解碳酸酯沉淀物,即引起脱钙,从而恢复土壤渗透性。我们试图解释这些方法的方案,并说明每个实验的结果。每种技术控制土壤的物理性质,可以减少建筑成本和降低环境影响。

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