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- W2017102537 abstract "Abstract The results of a pilot-scale phytoremediation study are reported in this paper. Small plots of trees established on a closed municipal waste landfill site were irrigated with recovered groundwater containing 1,4-dioxane (dioxane) and other volatile organic compounds (VOCs). The plots were managed to minimize the leaching of irrigation water, and leaching was quantified by the use of bromide tracer. Results indicated that the dioxane (2.5 μg/L) was effectively removed, probably via phytovolatilization, and that a full-scale phytoremediation system could be used. A system is now in place at the site in which the recovered groundwater can be treated using two different approaches. A physical treatment system (PTS) will be used during the winter months, and a 12 ha phytoremediation system (stands of coniferous trees) will be used during the growing season. The PTS removes VOCs using an air-stripper, and destroys dioxane using a photo-catalytic oxidation process. Treated water will be routed to the local sewer system. The phytoremediation system, located on the landfill, will be irrigated with effluent from the PTS air-stripper containing dioxane. Seasonal use of the phytoremediation system will reduce reliance on the photo-catalytic oxidation process that is extremely energy consumptive and expensive to operate. KEY WORDS: pilot studyirrigationlandfillconiferousphytovolatilization ACKNOWLEDGMENTS The contributions of Joshua Fell and Casey Warner of ERM and Tareq Adham of AECOM are gratefully acknowledged. Mr. Rob Hibbs of MeasureTek, Inc. provided competent assistance with data logger programming. We thank former employees of Phytokinetics, Inc., Jeff Hodgen and Steve Gilbert for their work on the Project." @default.
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- W2017102537 date "2013-11-26" @default.
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- W2017102537 title "Phytoremediation of 1,4-Dioxane-Containing Recovered Groundwater" @default.
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- W2017102537 doi "https://doi.org/10.1080/15226514.2012.687018" @default.
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