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Sediment arsenic hotspots in an abandoned tailings storage facility, Gold Ridge Mine, Solomon Islands.
Jacob-Tatapu, Krista J; Albert, Simon; Grinham, Alistair.
Affiliation
  • Jacob-Tatapu KJ; Mines Division, Ministry of Mines, Energy and Rural Electrification, Solomon Islands Government, Solomon Islands.
  • Albert S; School of Civil Engineering, The University of Queensland, St Lucia, Brisbane, 4072, Australia. Electronic address: s.albert@uq.edu.au.
  • Grinham A; School of Civil Engineering, The University of Queensland, St Lucia, Brisbane, 4072, Australia.
Chemosphere ; 269: 128756, 2021 Apr.
Article in En | MEDLINE | ID: mdl-33153844
ABSTRACT
Gold mining of arsenopyrite ore bodies result in waste tailings that contain elevated levels of arsenic. Disposal of these wastes in a Tailings Storage Facility (TSF) represents a substantial environmental risk if not properly managed. The Gold Ridge mine on Guadalcanal, in the Solomon Islands was abandoned from 2014 to 2018, leaving the TSF with little ongoing environmental management. Surface water quality monitoring observed a threefold increase in surface water arsenic concentrations over a 6-month period when no mining operations were occurring. This study aimed to investigate bottom sediments as the source of elevated concentrations of arsenic in the surface waters of the TSF during mine closure. This was achieved by analysing arsenic concentrations in the surface water, sediment porewaters and by quantifying sediment arsenic flux as dissolved oxygen availability declined. It was evident that bottom sediments of the TSF were the potential source of arsenic, having an average arsenic concentration of 437.9 mg kg-1. In addition, average sediment porewater arsenic concentrations across the TSF were 1.07 mg L-1, with a large central zone of highly elevated concentrations peaking at over 17 mg L-1. Long term sediment core incubations demonstrated arsenic effluxes from all sites monitored under both oxic and hypoxic conditions, ranging from 0.72 mg m-2 day-1 to 7.01 mg m-2 day-1 respectively. These results suggest that arsenic hotspots within the TSF have the capability to contribute to increased arsenic concentrations in surface waters. Management of mine TSF's should consider these geochemical interactions that can occur in abandoned sites.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arsenic / Water Pollutants, Chemical Language: En Journal: Chemosphere Year: 2021 Document type: Article Affiliation country: Solomon Islands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arsenic / Water Pollutants, Chemical Language: En Journal: Chemosphere Year: 2021 Document type: Article Affiliation country: Solomon Islands
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