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- W2803106411 abstract "Core Ideas Controlled infiltration of amended water enhanced bioremediation. Remediation strategy in contaminated vadose zone was evaluated in real time. Vadose zone hydrochemical and isotopic properties were monitored in situ. CSIA was applied to aqueous and vapor phases for attenuation assessment. In situ bioremediation of a contaminated vadose zone requires implementing hydraulic and chemical conditions that stimulate the development of indigenous bacteria capable of degrading contaminants in the subsurface. We investigated enhanced biostimulation of a gasoline‐contaminated deep vadose zone through nutrient‐ and O 2 –amended water infiltration. A vadose zone monitoring system (VMS) provided real‐time observations of the treatment process's effect on hydrocarbon attenuation. The VMS data included continuous measurements of variations in water content, concentrations and isotopic compositions of methyl tert ‐butyl ether and benzene, toluene, ethylbenzene, and xylene in pore‐water and gas phases, and concentrations of O 2 and CO 2 in the vadose zone gas phase. Real‐time observations from the unsaturated zone enabled interactive adjustment of the remediation strategy and improved biostimulation conditions for biodegradation of the target compounds. In the course of three infiltration events that included infiltration of an O 2 – and nutrient‐enriched water solution, a significant reduction in contaminant mass was observed across the unsaturated zone." @default.
- W2803106411 created "2018-06-01" @default.
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- W2803106411 date "2018-01-01" @default.
- W2803106411 modified "2023-09-26" @default.
- W2803106411 title "In Situ Bioremediation of a Gasoline‐Contaminated Vadose Zone: Implications from Direct Observations" @default.
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- W2803106411 doi "https://doi.org/10.2136/vzj2017.08.0153" @default.
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