Metals · 2018 · 35 citations · 34 references
Groundwater QualityEngineeringChemistryPermeable Reactive BarrierChemical EngineeringEnvironmental ChemistryMetalloid ContaminationBioremediationGeoenvironmental EngineeringWater TreatmentZhovty Vody CityOrganic Carbon MixturesUranium Mine TsfUranium RemovalWater QualityGroundwater PollutionGroundwater HydrogeochemistryRadioactive Waste DisposalEnvironmental EngineeringEnvironmental RemediationIron MiningGroundwater Remediation
Zhovty Vody city, located in south-central Ukraine, has long been an important center for the Ukrainian uranium and iron industries. Uranium and iron mining and processing activities during the Cold War resulted in poorly managed sources of radionuclides and heavy metals. Widespread groundwater and surface water contamination has occurred, which creates a significant risk to drinking water supplies. Hydrogeologic and geochemical conditions near large uranium mine tailings storage facility (TSF) were characterized to provide data to locate, design and install a permeable reactive barrier (PRB) to treat groundwater contaminated by leachate infiltrating from the TSF. The effectiveness of three different permeable reactive materials was investigated: zero-valent iron (ZVI) for reduction, sorption, and precipitation of redox-sensitive oxyanions; phosphate material to transform dissolved metals to less soluble phases; and organic carbon substrates to promote bioremediation processes. Batch and column experiments with Zhovty Vody site groundwater were conducted to evaluate reactivity of the materials. Reaction rates, residence time and comparison with site-specific clean-up standards were determined. Results of the study demonstrate the effectiveness of the use of the PRB for ground water protection near uranium mine TSF. The greatest decrease was obtained using ZVI-based reactive media and the combined media of ZVI/phosphate/organic carbon combinations.
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Reductive Precipitation of Uranium(VI) by Zero-Valent Iron
Baohua Gu, Liyuan Liang, M. Dickey et al. · Environmental Science & Technology · 1998 · 331 citations
Engineering, Bear Creek, Chemistry +17