Item talk:Q244615

From geokb

{

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   "name": "Complex resistivity signatures of ethanol biodegradation in porous media",
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   "abstract": "Numerous adverse effects are associated with the accidental release of ethanol (EtOH) and its persistence in the subsurface. Geophysical techniques may permit non-invasive, real time monitoring of microbial degradation of hydrocarbon. We performed complex resistivity (CR) measurements in conjunction with geochemical data analysis on three microbial-stimulated and two control columns to investigate changes in electrical properties during EtOH biodegradation processes in porous media. A Debye Decomposition approach was applied to determine the chargeability (m), normalized chargeability (mn) and time constant (\u03c4) of the polarization magnitude and relaxation length scale as a function of time. The CR responses showed a clear distinction between the bioaugmented and control columns in terms of real (\u03c3\u2032) and imaginary (\u03c3\u2033) conductivity, phase (\u03d5) and apparent formation factor (Fapp). Unlike the control columns, a substantial decrease in\u00a0\u03c3\u2032\u00a0and increase in\u00a0Fapp\u00a0occurred at an early time (within 4\u00a0days) of the experiment for all three bioaugmented columns. The observed decrease in\u00a0\u03c3\u2032\u00a0is opposite to previous studies on hydrocarbon biodegradation. These columns also exhibited increases in\u00a0\u03d5\u00a0(up to ~\u00a09\u00a0mrad) and\u00a0\u03c3\u2033\u00a0(up to two order of magnitude higher) 5\u00a0weeks after microbial inoculation. Variations in\u00a0m\u00a0and\u00a0mn\u00a0were consistent with temporal changes in\u00a0\u03d5\u00a0and\u00a0\u03c3\u2033\u00a0responses, respectively. Temporal geochemical changes and high resolution scanning electron microscopy imaging corroborated the CR findings, thus indicating the sensitivity of CR measurements to EtOH biodegradation processes. Our results offer insight into the potential application of CR measurements for long-term monitoring of biogeochemical and mineralogical changes during intrinsic and induced EtOH biodegradation in the subsurface.",
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