Modelling Plume Development with Annual Pulses of Contaminants Released from an Airport Runway to a Layered Aquifer, Evaluation of an In Situ Monitoring System

Author:

French Helen K.12,Hansen Mona C.3ORCID,Moe Kamilla G.4,Stene Julie5

Affiliation:

1. Faculty of Environmental Sciences and Natural Resource Management, Norwegian University of Life Sciences (NMBU), 1430 Ås, Norway

2. Norwegian Institute of Bioeconomy Research (NIBIO), 1433 Ås, Norway

3. Norwegian Geotechnical Institute (NGI), Sandakerveien 140, 0484 Oslo, Norway

4. AVINOR, Dronning Eufemias Gate 6A, 0191 Oslo, Norway

5. Norconsult, Postboks 626, 1303 Sandvika, Norway

Abstract

In cold climates, the use of de-icing chemicals in the winter can lead to groundwater contamination, especially when used in large quantities, such as at airports. Oslo Airport, Gardermoen, is situated on Norway’s largest rain-fed aquifer. Potassium formate is used to remove ice from runways and propylene glycol from airplanes; the organic parts are degradable. Most of the wells to monitor the spread of de-icing chemicals in the underlying aquifer have well screens near the groundwater level, while the runways and the source of de-icing chemicals are near the groundwater divides, where vertical flow is expected. The objective of this study is to demonstrate the importance of layers and time-varying recharge on the spreading of contaminant plumes in an aquifer near a groundwater divide. This is done with numerical modelling. The model results show increased vertical transport of the added tracer in the presence of horizontal layers, both continuous and discontinuous, in the aquifer. With certain distributions of hydraulic conductivity, Ks, we demonstrate that deeper monitoring wells are required. With the scenarios modelled here, time-varying recharge has a weaker effect on plume distribution. Measured concentrations of potassium and total organic carbon show the cyclic effect of seasonally varying recharge of contaminants, and an asymptotic accumulation of concentration over time, that is consistent with the model runs. In conclusion, groundwater monitoring systems near a groundwater divide should include multi-level samplers to ensure control of the vertical plume movement.

Funder

Oslo Airport, NGI

Earth Rescue Centre for Research Driven Innovation

Rescue of Earth Materials in the Circular Economy

Research Council of Norway

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference28 articles.

1. (2012). Environmental Impact and Benefit Assessment for the Final Effluent Limitation Guidelines and Standards for the Airport Deicing Category (Standard No. EPA-821-R-12-003).

2. Improved management of winter operations to limit subsurface contamination with degradable deicing chemicals in cold regions;French;Environ. Sci. Pollut. Res.,2013

3. Transport and degradation of propyleneglycol and potassium acetate in the unsaturated zone;French;J. Contam. Hydrol.,2001

4. Tellam, J.H., Rivett, M.O., Israfilov, R.G., and Herringshaw, L.G. (2006). Urban Groundwater Management and Sustainability, Springer. NATO Science Series.

5. De Vries, J. (2016). Solute Transport and Water Flow in an Unsaturated, Heterogeneous Profile with Root Water Uptake. [Master’s Thesis, Wageningen University].

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