首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Induced polarization as a monitoring tool for in-situ microbial induced carbonate precipitation (MICP) processes
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Induced polarization as a monitoring tool for in-situ microbial induced carbonate precipitation (MICP) processes

机译:诱导偏振作为原位微生物诱导的碳酸盐沉淀(MICP)工艺的监测工具

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摘要

Microbial induced carbonate precipitation (MICP) is a promising soil stabilization method performed by stimulating soil microbes that are naturally occurring and ubiquitous in soil systems. The precipitated carbonate acts as a cementation agent to bind loose soil at grain to grain contacts. MICP has been extensively tested and proven in laboratory environments, as well as in limited field trials; however, long term field applications still remain challenging, partly due to quality control and monitoring issues. Induced polarization (IP), an established geophysical method in mineral exploration, is a prime candidate for MICP monitoring and characterization. This study presents the geophysical results of a 15-day field-scale MICP project. The MICP treatment involved the injection of molasses (carbon source for microbial proliferation) and urea in a Ca2+ rich aquifer. IP monitoring successfully delineated, spatially and temporally, the propagation of MICP in the treatment area, while common resistivity measurements failed to capture any MICP related changes. Reduced hydraulic conductivity in the treatment area versus untreated area, further supports that MICP has changed the physical properties of the subsurface. Furthermore, conventional geochemical monitoring as well as X-ray diffraction analysis confirmed carbonate precipitation in samples from discrete wells in the treatment area.
机译:微生物诱导的碳酸盐沉淀(MICP)是通过刺激天然存在和土壤系统中无处不在的土壤微生物进行的有前途的土壤稳定方法。沉淀的碳酸盐用作胶结剂,以将松散的土壤结合到晶粒触点。 MICP已在实验室环境中进行广泛测试和经过验证,以及有限的现场试验;然而,长期现场应用仍然持挑战,部分原因是质量控制和监测问题。诱导极化(IP),矿物勘探中已建立的地球物理方法,是MICP监测和表征的主要候选者。本研究介绍了一个15天的现场级MICP项目的地球物理结果。 MICP治疗涉及在CA2 +富含含水层中注射糖蜜(用于微生物增殖的碳源)和尿素。 IP监控在处理区域中成功划算,空间和时间,在处理区域中传播MICP,而公正的电阻率测量未能捕获任何MICP相关的变化。处理区域与未处理区域的液压导电性降低,进一步支持MICP改变了地下的物理性质。此外,常规地球化学监测以及X射线衍射分析证实了在处理区域中离散孔的样品中的碳酸盐沉淀。

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