Environmental Science and Pollution Research· 2026Q1
From environmental burden to resource potential: environmental impact evaluation and Critical Raw Materials recovery from abandoned gold mining waste in the Western Alps (NW Italy)
- 0citations
- Q1SCImago
- 2026year
Short summary
Abandoned gold mine waste in Italy's Western Alps is heavily contaminated with arsenic (As) and other toxic elements, posing significant ecological risks, but also contains valuable critical raw materials (CRMs) like As, W, Sb, and Bi suitable for recovery.
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Key points
- Abandoned gold mine waste in the Anzasca Valley is heavily contaminated with arsenic (As), posing significant environmental and ecological risks.
- Soils are classified as heavily to extremely contaminated by As, with moderate contamination by Pb and Co.
- The waste material is enriched in critical raw materials (CRMs), notably As, W, Sb, and Bi, with minor REE enrichment.
- The study proposes concurrent recovery of CRMs, particularly As, as part of sustainable remediation projects.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Extractive waste (EW) from former mining activities poses long-term environmental impacts while representing a potential secondary resource. Within a circular economy framework, EW can be valorised to recover raw materials (RMs) and critical raw materials (CRMs) contributing to the supply of strategic resources. In the Anzasca Valley (Piedmont, Italy), gold mines of Crocette and Pestarena operated until the mid-20th century, producing large amount of EW. These materials have caused persistent contamination of soils and waters, particularly with As and other potentially toxic elements (PTEs). The aims of the study are i) to assess environmental contamination and ecological risk, and ii) to evaluate the potential for recovering CRMs from EW. To do so, the study combines mineralogical and geochemical data of soils and EW from different sampling campaigns. Results revealed significant enrichment of CRMs, particularly As, followed by W, Sb, Bi, and minor enrichment of some light REEs (La, Ce, Pr, Nd). The environmental impact assessment identified As as the main pollutant, classifying soils as heavily to extremely contaminated, with additional moderate contamination by Pb and Co, and indicating an overall moderate ecological risk. The estimated volumes of EW and residual amounts of selected CRMs (A, Bi, Sb, W) indicate a potential for concurrent recovery, with As as the primary target. The findings suggest that this approach can represent a sustainable intervention within remediation projects, combining environmental risk mitigation with the recovery of valuable resources and supply security.
The authors' abstract, as published at the source. Environmental Science and Pollution Research, 2026 · DOI ↗
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Building and ConstructionEngineering