Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects

Sui C, Fatichi S, Burlando P, Weber E, Battista G. 2022. Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects. Science of The Total Environment. 812, 151473.

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Journal Article | Published | English

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Author
Sui, Chunming; Fatichi, SimoneISTA; Burlando, Paolo; Weber, Enrico; Battista, Giulia
Abstract
A spatially distributed trace metal transport and transformation module was developed and implemented within the hydrological model TOPKAPI-ETH. The new module can be used to better understand, at high spatial and temporal resolution, the transport and reactions of trace metals as they move through a catchment from upland sources to downstream areas and water bodies. The newly developed module takes into consideration solid metal in multiple chemical phases with different reactivity and simulates their mutual transformation over time, which gives the possibility to analyze the fraction of different solid metal phases present in the river suspended sediment. The characteristics and potential of the model are demonstrated by simulating Zinc (Zn) and Cadmium (Cd) dynamics in a headwater catchment of the Xiang River in South China, which has been highly perturbed by mining activities. The developed module is shown to reasonably reproduce the observed dynamics of dissolved and total trace metals flux for 14 months at two monitoring stations. The distributed solute transport model was proved to be capable of explaining the reasons underlying the spatial variability of C-Q relationships that are driven by the combined effect of point and non-point pollution sources, as well as identifying the spatiotemporal hotspots of trace metal pollution. By means of synthetic numerical experiments, a limited impact of slow reactions on dissolved Cd transport from upland to river over short-temporal scales was demonstrated, while for longer scales, e.g. >5 years, this effect becomes more relevant, highlighting potential long-lasting sources of trace metal pollution and their impacts.
Publishing Year
Date Published
2022-03-01
Journal Title
Science of The Total Environment
Publisher
Elsevier
Volume
812
Article Number
151473
ISSN
eISSN
IST-REx-ID

Cite this

Sui C, Fatichi S, Burlando P, Weber E, Battista G. Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects. Science of The Total Environment. 2022;812. doi:10.1016/j.scitotenv.2021.151473
Sui, C., Fatichi, S., Burlando, P., Weber, E., & Battista, G. (2022). Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects. Science of The Total Environment. Elsevier. https://doi.org/10.1016/j.scitotenv.2021.151473
Sui, Chunming, Simone Fatichi, Paolo Burlando, Enrico Weber, and Giulia Battista. “Modeling Distributed Metal Pollution Transport in a Mine Impacted Catchment: Short and Long-Term Effects.” Science of The Total Environment. Elsevier, 2022. https://doi.org/10.1016/j.scitotenv.2021.151473.
C. Sui, S. Fatichi, P. Burlando, E. Weber, and G. Battista, “Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects,” Science of The Total Environment, vol. 812. Elsevier, 2022.
Sui C, Fatichi S, Burlando P, Weber E, Battista G. 2022. Modeling distributed metal pollution transport in a mine impacted catchment: Short and long-term effects. Science of The Total Environment. 812, 151473.
Sui, Chunming, et al. “Modeling Distributed Metal Pollution Transport in a Mine Impacted Catchment: Short and Long-Term Effects.” Science of The Total Environment, vol. 812, 151473, Elsevier, 2022, doi:10.1016/j.scitotenv.2021.151473.
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