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May 17, 2026Journal of Hazardous Materials Advances0 citationsOpen Access

Reservoir sedimentation and storage increases availability of potentially toxic elements from historic Pb-Zn-F mining contamination

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EOE. I. OboloRLR.A. LordBNB. Nunn

Key Points

  • The aim is to investigate how reservoir sedimentation affects the availability of contaminated elements from historic mining activities.
  • Analyzed stream sediment and reservoir bottom samples using pseudo-total and sequential extraction methods.
  • Calculated pollution indices including risk assessment code (RAC) and geoaccumulation index (I-Geo).
  • Investigated the spatial distribution of Pb, Zn, Cd, and Mn in sediment samples with respect to their exchangeable fractions.
  • Found little natural attenuation of Pb contamination in sediments over 30 years, with elevated levels near entry points.
  • Elevated concentrations of Zn were present throughout the reservoir, with Mn concentrated in deeper sediments.
  • The exchangeable fraction of Cd, Mn, and Zn indicates a dangerous store of contaminants easily disturbed by operational or meteorological effects.

Abstract

• Sediment Pb contamination in water catchment little changed 30 years after mining • Reservoir sedimentation shows proximal Pb relative to distal Zn, Mn and Cd deposits • Sequential extraction reveals increased availability of Pb, Zn, Cd, Mn in reservoir • Exchangeable fraction risk sum improves on RAC, I-Geo and EF pollution indices • Processes in reservoir explain fractionation between Pb and Zn downstream in rivers Pseudo-total and sequential extraction analyses of stream sediment and reservoir bottom samples with calculated pollution indices were used to investigate the efficacy of reservoir sedimentation and the effects of impoundment on recent fluorspar mineral processing wastes and legacy contaminants from historic Pb-Zn mining. Contamination levels showed little natural attenuation over three decades since mining ceased. While the Derwent drinking water reservoir acts as a partially effective trap for Pb, with decreasing levels found in bottom sediments further away from the entry point for suspended river sediment, elevated Zn concentrations occur throughout, with Mn concentrated distally in deeper water sediments nearest to the abstraction and discharge points. As the majority of Cd, Mn and Zn in the reservoir sediments are found in the exchangeable fraction, the net result is a store of fine-grained, chemically and biologically available contamination, which is readily amenable to disturbance and redispersion through operational or meteorological effects, which in turn may potentially be compounded by future climate change.

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Cite This Study

Obolo et al. (2026) studied this question.

synapsesocial.com/papers/6a095b1b7880e6d24efe0e06https://doi.org/10.1016/j.hazadv.2026.101227
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