HR: 0800h
AN: H21E-1051 [Abstracts]
TI: A CYCLIC APPROACH FOR THE QUANTIFICATION AND REMEDIATION OF SUBSURFACE CONTAMINATION
AU: * Ptak, T
EM: thomas.ptak@uni-tuebingen.de
AF: University of Tuebingen, Center for Applied Geoscience, Siwartstrasse 10, Tuebingen, D-72076
Germany
AU: Teutsch, G
AF: UFZ Leipzig-Halle GmbH, Permoserstr. 15, Leipzig, D-04347
Germany
AB:
A new approach to contaminated land assessment and revitalisation, focusing on groundwater quality and complex contamination
patterns at urban industrial megasites was developed. The new approach comprises three cycles: (a) the assessment of
groundwater contamination using an integral mass flux based investigation method at the scale of entire industrial sites, (b)
the delimiting of potential contamination source zones using backtracking and contaminant fingerprinting techniques, and (c)
the development of emission oriented remediation strategies. The major advantage of the new approach is that the number of
areas to be considered for further investigation and remediation is reduced from one cycle to the next. Consequently, a large
potentially contaminated area is screened initially, but only a small area may be finally remediated, yielding a significant
reduction of costs.
The results from the integral investigation at the scale of entire megasites can be used for risk assessment purposes, for
the quantification of the natural attenuation potential, as well as for the development of priorities for clean-up and / or
further investigations and for the design of remediation measures. In addition, a consistent quantification of uncertainties
in the results from the application of the integral groundwater investigation method is possible. Finally, the delimiting of
the source zone extent and its uncertainty allows to define priorities for further investigation measures at a smaller scale,
and to develop cost-optimized clean-up strategies.
In this contribution, the focus will be on the three cycles of the new approach. Also, examples of application will be
presented.
DE: 1803 Anthropogenic effects
DE: 1829 Groundwater hydrology
DE: 1831 Groundwater quality
DE: 1832 Groundwater transport
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting