Your browser doesn't support javascript.
loading
Impact of recent artisanal small-scale gold mining in Senegal: Mercury and methylmercury contamination of terrestrial and aquatic ecosystems.
Niane, Birane; Guédron, Stéphane; Feder, Frédéric; Legros, Samuel; Ngom, Papa Malick; Moritz, Robert.
Affiliation
  • Niane B; Department of Earth Sciences, University of Geneva, rue des Maraîchers 13, CH-1205 Geneva, Switzerland. Electronic address: Birane.niane@unige.ch.
  • Guédron S; Univ. Grenoble Alpes, Univ. Savoie Mont Blanc, CNRS, IRD, IFSTTAR, ISTerre, 38000 Grenoble, France.
  • Feder F; CIRAD, UPR Recyclage et risque, Laboratoire Mixte International IE SOL, 18524 Dakar, Senegal.
  • Legros S; CIRAD, UPR Recyclage et risque, Laboratoire Mixte International IE SOL, 18524 Dakar, Senegal.
  • Ngom PM; Département de Géologie, Université Cheikh Anta DIOP, Dakar, Senegal.
  • Moritz R; Department of Earth Sciences, University of Geneva, rue des Maraîchers 13, CH-1205 Geneva, Switzerland.
Sci Total Environ ; 669: 185-193, 2019 Jun 15.
Article in En | MEDLINE | ID: mdl-30878927
In Senegal, the environmental impact of artisanal small-scale gold mining (ASGM) using mercury (Hg) is poorly documented despite its intensification over the past two decades. We report here a complete dataset including the distribution and speciation of Hg in soil, sediment, and water in pristine and ASGM impacted sites of the Gambia River ecosystem (Kedougou region - eastern Senegal). Selective extraction showed that soils surrounding ASGM activities were contaminated with elemental Hg [Hg(0)] at concentrations up to 3.9 mg kg-1. In the Gambia River, high total Hg (THg: 1.16 ±â€¯0.80 mg kg-1) and methylmercury (MeHg: 3.2 ±â€¯2.3 ng g-1) were also measured in sediment samples collected at ASGM sites. Along the stream, THg concentrations in sediment decrease with distance from the ASGM sites, while those of methylmercury increase downstream. The study of THg and MeHg partitioning between filtered surface water and suspended particles demonstrate that particulate transport is responsible for the downstream dissemination of the Hg contamination from ASGM sites. Sedimentation of fine particles enriched in Hg downstream ASGM sites likely favors MeHg production and accumulation in sediment. Although elemental Hg is weakly labile, surface soil erosion may also provide important and long-term Hg inputs to downstream aquatic ecosystems, where it can be oxidized and methylated. Finally, the dissemination of THg and MeHg downstream from the ASGM sites in the Gambia River may constitute a long-term source of contamination and can have a large scale impact on the aquatic ecosystem through biomagnification.
Key words

Full text: 1 Database: MEDLINE Language: En Journal: Sci Total Environ Year: 2019 Type: Article

Full text: 1 Database: MEDLINE Language: En Journal: Sci Total Environ Year: 2019 Type: Article