Author:
Göransson G.,Larson M.,Bendz D.,Åkesson M.
Abstract
Abstract. Landslides of contaminated soil into surface water represent an overlooked exposure pathway that has not been addressed properly in existing risk analysis for landslide hazard, contaminated land, or river basin management. A landslide of contaminated soil into surface water implies an instantaneous exposure of the water to the soil, dramatically changing the prerequisites for the mobilisation and transport of pollutants. In this study, an analytical approach is taken to simulate the transport of suspended matter released in connection with landslides into rivers. Different analytical solutions to the advection-dispersion equation (ADE) were tested against the measured data from the shallow rotational, retrogressive landslide in clayey sediments that took place in 1993 on the Göta River, SW Sweden. The landslide encompassed three distinct events, namely an initial submerged slide, followed by a main slide, and a retrogressive slide. These slides generated three distinct and non-Gaussian peaks in the online turbidity recordings at the freshwater intake downstream the slide area. To our knowledge, this registration of the impact on a river of the sediment release from a landslide is one of few of its kind in the world and unique for Sweden. Considering the low frequency of such events, the data from this landslide are highly useful for evaluating how appropriate the ADE is to describe the effects of landslides into surface water. The results yielded realistic predictions of the measured variation in suspended particle matter (SPM) concentration, after proper calibration. For the three individual slides it was estimated that a total of about 0.6% of the total landslide mass went into suspension and was transported downstream. This release corresponds to about 1 to 2% of the annual suspended sediment transport for that river stretch. The studied landslide partly involved an industrial area, and by applying the analytical solution to estimate the transport of metals in the sediments, it was found that landslides may release a significant amount of pollutants if large contaminated areas are involved. However, further studies are needed to develop more detailed descriptions of the transport processes. There is also a need to increase the knowledge on possible environmental consequences in the near and far field, in a short- and long-time perspective. In summary, the release of pollutants should not be neglected in landslide risk assessments.
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Reference45 articles.
1. Abramowitz, M. and Stegun, I. A. (Eds.): Handbook of Mathematical Functions: With Formulas, Graphs, and Mathematical Tables, Dover Publications, New York, 1965.
2. Åkesson, M.: Mass movements as contamination carriers in surface water systems – Swedish experiences and risks, Master Thesis, Department of Geology, Lund University, Lund, 2010.
3. Åström, J., Pettersson, T. J. R., and Stenström, T. A.: Identification and management of microbial contaminations in a surface drinking water source, J. Water Health, 05, 67–79, 2007.
4. Atkinson, T. C. and Davis, P. M.: Longitudinal dispersion in natural channels: l. Experimental results from the River Severn, U.K., Hydrol. Earth Syst. Sci., 4, 345–353, https://doi.org/10.5194/hess-4-345-2000, 2000.
5. Bayer, T. M. and Linneman, S.: The nature and transport of the fine-grained component of Swift Creek Landslide, Northwest Washington, Earth Surf. Proc. Land., 36, 624–640, 2011.