<p>The restoration of mining areas is a topical issue in tropical countries, as mining was often carried out without precautions being taken at the outset. The rivers near these mining sites are subject to chemical contamination and physical transformations linked to the input of materials, which can even transform the course of the river. This study focuses on an area influenced by 40&#xa0;years of mining and which has undergone a physical restoration process: the Moulili River in Gabon. Metal element analyses were carried out on surface sediments and at a depth of 40&#xa0;cm. Results showed that even if potentially toxic metals content is high, the enrichment factor show no enrichment in Mn, Fe, Co, Ni, Cu and Zn (&lt; 1). However, all showed moderate enrichment in Pb, and most in Cr (&gt; 1) and Sn (&gt; 3). For tin, the CDT samples leaving the washery had the highest Efs. The results show that enrichment changes with distance, as do the environmental impact indices, but also that these indices are not necessarily suitable for areas where the parent rock is itself rich in metallic elements. Along the river, the abatement rate gives the values of Pb (36.5&#xa0;mg&#xa0;kg<sup>−1</sup>&#xa0;km<sup>−1</sup>), Ni (138.14&#xa0;mg&#xa0;kg<sup>−1</sup>&#xa0;km<sup>−1</sup>), Cu (119.10&#xa0;mg&#xa0;kg<sup>−1</sup>&#xa0;km<sup>−1</sup>) and Zn (125.8&#xa0;mg&#xa0;kg<sup>−1</sup>&#xa0;km<sup>−1</sup>). This work shows that, overall, physical restoration is not sufficient to eliminate enrichment, and that the suspended matter transported by the river shows a fractionation involving different transfer processes for the metals studied.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Restored Moulili riverbed impacted by manganese mining activity: potentially toxic metals enrichment factor and environmental risk (Moanda, Gabon)

  • Madi Guirema Abaker,
  • Davy Silas Mbadinga Boubala,
  • Estelle Dumont,
  • Lauriss NgombI-Pemba,
  • Adelaïde Nieguitsila,
  • Amanda Tadini,
  • Stéphane Jean Louis Mounier

摘要

The restoration of mining areas is a topical issue in tropical countries, as mining was often carried out without precautions being taken at the outset. The rivers near these mining sites are subject to chemical contamination and physical transformations linked to the input of materials, which can even transform the course of the river. This study focuses on an area influenced by 40 years of mining and which has undergone a physical restoration process: the Moulili River in Gabon. Metal element analyses were carried out on surface sediments and at a depth of 40 cm. Results showed that even if potentially toxic metals content is high, the enrichment factor show no enrichment in Mn, Fe, Co, Ni, Cu and Zn (< 1). However, all showed moderate enrichment in Pb, and most in Cr (> 1) and Sn (> 3). For tin, the CDT samples leaving the washery had the highest Efs. The results show that enrichment changes with distance, as do the environmental impact indices, but also that these indices are not necessarily suitable for areas where the parent rock is itself rich in metallic elements. Along the river, the abatement rate gives the values of Pb (36.5 mg kg−1 km−1), Ni (138.14 mg kg−1 km−1), Cu (119.10 mg kg−1 km−1) and Zn (125.8 mg kg−1 km−1). This work shows that, overall, physical restoration is not sufficient to eliminate enrichment, and that the suspended matter transported by the river shows a fractionation involving different transfer processes for the metals studied.