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Detecting Microbially Induced Calcium Carbonate Precipitation in Porous Systems Using Low-Field Nuclear Magnetic Resonance Relaxometry

机译:使用低场核磁共振弛豫法检测多孔系统中微生物诱导的碳酸钙沉淀

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摘要

Low-field nuclear magnetic resonance has been shown to be sensitive to the chemical and physical changes in a porous medium caused by microbially induced calcium carbonate precipitation (MICP), confirming its potential for detection of MICP for subsurface engineering applications. This investigation used a 2-MHz rock core analyzer, measuring T_2 relaxation, in combination with scanning electron microscopy to characterize the daily chemical and physical changes occurring in various granular media including 1- and 0.5-mm soda lime glass beads and 1- and 0.45-mm quartz sand. An increase in T_2 time was observed in all of the granular media in accordance with MICP progression. An estimate of the surface relaxivity, p, was obtained for the silica glass, quartz sand, and mineral precipitate, which allowed for correlation between mineral precipitation surface coverage and T_2 relaxation time. The results indicated the potential for detailed in situ MICP progress monitoring during the early stages of the process by portable low-field nuclear magnetic resonance (NMR) devices.
机译:低场核磁共振已显示对微生物诱导的碳酸钙沉淀(MICP)引起的多孔介质中的化学和物理变化敏感,从而证实了其在地下工程应用中检测MICP的潜力。这项研究使用2 MHz岩心分析仪,测量T_2弛豫,结合扫描电子显微镜来表征在各种颗粒介质(包括1毫米和0.5毫米苏打石灰玻璃珠以及1毫米和0.45毫米)中每日发生的化学和物理变化。 -mm石英砂。在所有粒状介质中,随着MICP的进展,T_2时间增加。获得了石英玻璃,石英砂和矿物沉淀物的表面弛豫度p的估计值,这使矿物沉淀物的表面覆盖率和T_2弛豫时间之间具有相关性。结果表明,在该过程的早期阶段,通过便携式低场核磁共振(NMR)设备可以进行详细的原位MICP进度监控。

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    《Journal of geotechnical and geoenvironmental engineering》 |2020年第4期|04020012.1-04020012.9|共9页
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    Dept. of Mechanical and Industrial Engineering Center for Biofilm Engineering Montana State Univ. Bozeman MT 59717;

    Dept. of Chemical and Biological Engineering Center for Biofilm Engineering Montana Mate Univ. Bozeman MT 59717;

    Center for Biofilm Engineering Montana State Univ. Bozeman MT 59717;

    Dept. of Civil Engineering Center for Biofilm Engineering Montana State Univ. Bozeman MT 59717;

    Korimako Chemical Limited P.O. Box 27575 Marion Square Te Aro Wellington 6021 New Zealand School of Chemistry and Physical Sciences Victoria Univ. of Wellington Wellington 6012 New Zealand;

    School of Engineering and Computer Science Victoria Univ. of Wellington Wellington 6012 New Zealand;

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