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Microbial growth and biofilm formation in geologic media is detected with complex conductivity measurements

机译:通过复杂的电导率测量可以检测地质介质中的微生物生长和生物膜形成

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Complex conductivity measurements (0.1 - 1000 Hz) were obtained from biostimulated sand-packed columns to investigate the effect of microbial growth and biofilm formation on the electrical properties of porous media. Microbial growth was verified by direct microbial counts, pH measurements, and environmental scanning electron microscope imaging. Peaks in imaginary ( interfacial) conductivity in the biostimulated columns were coincident with peaks in the microbial cell concentrations extracted from sands. However, the real conductivity component showed no discernible relationship to microbial cell concentration. We suggest that the observed dynamic changes in the imaginary conductivity (sigma '') arise from the growth and attachment of microbial cells and biofilms to sand surfaces. We conclude that complex conductivity techniques, specifically imaginary conductivity measurements are a proxy indicator for microbial growth and biofilm formation in porous media. Our results have implications for microbial enhanced oil recovery, CO2 sequestration, bioremediation, and astrobiology studies.
机译:从生物刺激的填充沙柱中获得复数电导率测量值(0.1-1000 Hz),以研究微生物生长和生物膜形成对多孔介质电性能的影响。通过直接微生物计数,pH测量和环境扫描电子显微镜成像验证了微生物的生长。在生物刺激的色谱柱中,假想(界面)电导率的峰值与从沙子中提取的微生物细胞浓度的峰值一致。但是,实际的电导率成分与微生物细胞浓度没有明显关系。我们建议观察到的假想电导率(sigma'')的动态变化是由于微生物细胞和生物膜在沙子表面的生长和附着所致。我们得出的结论是,复杂的电导率技术,特别是假想的电导率测量,是微生物在多孔介质中生长和生物膜形成的指标。我们的研究结果对微生物提高采油率,二氧化碳封存,生物修复和天体生物学研究具有重要意义。

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