Estimating the Fate of De-icing Salt in a Roadside Environment by Combining Modelling and Field Observations

Author:

Lundmark Annika,Jansson Per-Erik

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modelling,Environmental Chemistry,Environmental Engineering

Reference41 articles.

1. Archie, G. E. (1942). Electrical resistivity log as an aid in determining some reservoir characteristics. Transactions of the American Institute of Mining and Metallurgical Engineers, 146, 54–62.

2. Bartosova, A., & Novotny, V. (1999). Model of spring runoff quantity and quality for urban watersheds. Water Science and Technology, 39(12), 249–256.

3. Bengtström, L., & Westerström, G. (1992). Urban snowmelt and runoff in northern Sweden. Hydrological Sciences—Journal des Sciences Hydrologiques, 37, 263–275.

4. Beverly, C. R., Nathan, R. J., Malafant, K. W. J., & Fordham, D. P. (1999). Development of a simplified unsaturated module for providing recharge estimates to saturated groundwater models. Hydrological Processes, 13, 653–675.

5. Blomqvist, G. (1999). Air-borne transport of de-icing salt and damage to pine and spruce trees in a roadside environment. Licentiate thesis TRITA-AMI-LIC 2044, Division of Land and Water Resources, Department of Civil and Environmental Engineering, Royal Institute of Technology, Stockholm, 25 pp.

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