Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/14536
Authors: Briganti, Alessandra* 
Tuccimei, Paola* 
Voltaggio, Mario* 
Carusi, Claudio* 
Galli, Gianfranco* 
Lucchetti, Carlo* 
Title: Assessing methyl tertiary butyl ether residual contamination in groundwater using radon
Journal: Applied Geochemistry 
Series/Report no.: /116 (2020)
Publisher: Elsevier Ltd.
Issue Date: May-2020
DOI: 10.1016/j.apgeochem.2020.104583
Keywords: MTBE
NAPL
Radon
Groundwater contamination
Monitoring
Italy
Subject Classification03.02. Hydrology 
04.04. Geology 
Abstract: About 15 years ago, a fuelling station in Roma (Italy) was dismissed. When underground tanks were removed, a subsoil NAPL (Non-Aqueous Phase Liquid) contamination came out, showing gasoline leakage from the reservoirs. Monitoring actions took place next and only recently radon dissolved in groundwater was measured for a year and used as tracer of NAPLs in view of its high solubility in these substances. The relative deficit of radon in polluted groundwater compared to radon in background “clean” water allowed us to detect areas where residual gasoline is still located. The source of pollution was identified in correspondence of former gasoline tanks, in agreement with direct measurements of dissolved NAPLs, mainly Methyl Tertiary Butyl Ether (MTBE), a resistant and water-soluble additive introduced in gasoline in place of lead. A short and transient plume of MTBE was occasionally recognized. We hypothesize that the rise of groundwater table enhances removal of MTBE, likely adsorbed onto soil minerals such as zeolites, thus increasing its concentration in water. MTBE levels are then progressively reduced by natural attenuation processes, with half-life of about 23 days. Estimates of MTBE saturation from radon-deficit equations were not reliable because the aquifer is not homogeneous in terms of 226Ra distribution, porosity and emanation power and no equilibrium is reached for radon partitioning between NAPL and water.
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