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Reducing Soil Permeability Using Microbial Induced Carbonate Precipitation (MICP) Method: A Case Study of Shiraz Landfill Soil

机译:使用微生物诱导的碳酸盐沉淀(MICP)方法降低土壤渗透性:Shiraz垃圾填埋土的案例研究

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摘要

Improvement of engineering properties of soils to meet project requirements has long been subject of interest to civil engineers. One of the environment-friendly methods that have recently been used for this purpose is the biological method. These methods that actually benefit from various sciences such as biology, biochemistry, and civil engineering, use biological products or organisms such as bacteria that are commonly found in soils. In this study, the reduction of permeability or hydraulic conductivity of Shiraz landfill base soil using microbial induced calcite precipitation (MICP) has been explored. B. sphaericus was used to treat the soil. Falling head permeability tests are conducted to measure soil samples? permeability before and after biological treatment. The target variables were the curing time, bacterial density, optimal nutrient content, and soil unit weight. The test results demonstrated that the permeability of the samples treated with Bacillus sphaericus decreases by increasing curing time, the density of calcium chloride solution and bacterial density of samples. This study showed that the MICP can be utilized as a new environment-friendly method for reducing the soil permeability at the base and walls of the landfill to form a barrier between the waste and the groundwater and substrata.
机译:改善土壤的工程性质,以满足项目要求,长期以来对土木工程师感兴趣。最近用于此目的的环保方法之一是生物学方法。这些方法实际上从各种科学中受益,例如生物化学,生物化学和土木工程,使用生物产品或生物,如土壤中常见的细菌。在这项研究中,已经探讨了使用微生物诱导的方解石沉淀(MICP)的Shiraz垃圾填埋基土壤(MICP)的渗透率或液压导电性的降低。 B. Sphaericus用于治疗土壤。进行下降的头渗透性测试以测量土壤样品?生物治疗前后的渗透率。靶变量是固化时间,细菌密度,最佳的营养含量和土壤单元重量。测试结果表明,通过增加固化时间,氯化钙溶液的密度和样品的细菌密度,用芽孢杆菌Sphaericus处理的样品的渗透率降低。该研究表明,MICP可以用作一种新的环保方法,用于降低垃圾填埋场的底座和壁的土壤渗透,以在废物和地下水和副数据之间形成屏障。

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