Impact of Ethanol on the Natural Attenuation of MTBE in a Normally Sulfate-Reducing Aquifer

Side-by-side experiments were conducted in an aquifer contaminated with methyl-tert-butyl ether (MTBE) at a former fuel station to evaluate the effect of ethanol release on the fate of pre-existing MTBE contamination. On one side, for ∼9 months we injected groundwater amended with 1−3 mg/L benzene,...

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Veröffentlicht in:Environmental science & technology 2007-03, Vol.41 (6), p.2015-2021
Hauptverfasser: Mackay, Doug, de Sieyes, Nick, Einarson, Murray, Feris, Kevin, Pappas, Alex, Wood, Isaac, Jacobson, Lisa, Justice, Larry, Noske, Mark, Wilson, John, Adair, Cherri, Scow, Kate
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Sprache:eng
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Zusammenfassung:Side-by-side experiments were conducted in an aquifer contaminated with methyl-tert-butyl ether (MTBE) at a former fuel station to evaluate the effect of ethanol release on the fate of pre-existing MTBE contamination. On one side, for ∼9 months we injected groundwater amended with 1−3 mg/L benzene, toluene, and o-xylene (BToX). On the other side, we injected the same, adding ∼500 mg/ L ethanol. The fates of BToX in both sides (“lanes”) were addressed in a prior publication. No MTBE transformation was observed in the “No Ethanol Lane.” In the “With Ethanol Lane”, MTBE was transformed to tert-butyl alcohol (TBA) under the methanogenic and/or acetogenic conditions induced by the in situ biodegradation of the ethanol downgradient of the injection wells. The lag time before onset of this transformation was less than 2 months and the pseudo-first-order reaction rate estimated after 7−8 months was 0.046 d-1. Our results imply that rapid subsurface transformation of MTBE to TBA may be expected in situations where strongly anaerobic conditions are sustained and fluxes of requisite nutrients and electron donors allow development of an active acetogenic/methanogenic zone beyond the reach of inhibitory effects such as those caused by high concentrations of ethanol.
ISSN:0013-936X
1520-5851
DOI:10.1021/es062156q