In this study, we have analysed the mineralogy and the crystal chemistry of serpentine soils from ultramafic rocks of the metaophiolitic Voltri Massif (Liguria, Italy), in order to determine the primary and authigenic mineral species controlling the distribution and the mobility of PTEs during pedogenic processes. These serpentine soils were characterised by PTEs contents commonly exceeding the concentration limits laid down by environmental agencies, particularly for Cr (1200-2500 mg/kg) and Ni (1000-4200 mg/kg). With these hazardous PTEs concentrations, the knowledge of the distribution of PTEs-bearing minerals is of paramount importance for understanding their origin and their fate during the development of serpentine soil profiles and c...
Under closed geochemical conditions, the weathering of a serpentinite rock composed of serpentine (7...
Sulfide mineralization in the province of Trento (northeastern Italy) includes various mineral assem...
In the search for life on Mars near-surface soil environments may be important habitats for life acc...
In this study, we have analysed the mineralogy and the crystal chemistry of serpentine soils from ul...
The paper addresses the issue of health risk associated with the presence of chrysotile in the soil ...
Ultramafic soils are characterized by severe edaphic conditions induced by a low content of essentia...
International audienceThe distribution of four trace metals - nickel (Ni), chromium (Cr), manganese ...
The aim of the work is to assess the role of local-scale lithological, textural, and structural fact...
Ultramafic soils are characterized by the presence of several potentially toxic elements (PTE's; suc...
Serpentine soils are weathered products of a range of ultramafic rocks composed of ferromagnesian si...
Serpentinite rocks, high in Mg and trace elements including Ni, Cr, Cd, Co, Cu, and Mn and low in nu...
Serpentinites, perhaps more than any other rock type, control the composition and evolution of the d...
none3noBackground and Aim: Biotic and abiotic factors contribute in shaping the distribution through...
Numerous studies have highlighted the fact that the bioavailability of potentially toxic trace eleme...
Approximately 25,000 acres have been mapped as serpentinite-derived soils in Maryland. While fertili...
Under closed geochemical conditions, the weathering of a serpentinite rock composed of serpentine (7...
Sulfide mineralization in the province of Trento (northeastern Italy) includes various mineral assem...
In the search for life on Mars near-surface soil environments may be important habitats for life acc...
In this study, we have analysed the mineralogy and the crystal chemistry of serpentine soils from ul...
The paper addresses the issue of health risk associated with the presence of chrysotile in the soil ...
Ultramafic soils are characterized by severe edaphic conditions induced by a low content of essentia...
International audienceThe distribution of four trace metals - nickel (Ni), chromium (Cr), manganese ...
The aim of the work is to assess the role of local-scale lithological, textural, and structural fact...
Ultramafic soils are characterized by the presence of several potentially toxic elements (PTE's; suc...
Serpentine soils are weathered products of a range of ultramafic rocks composed of ferromagnesian si...
Serpentinite rocks, high in Mg and trace elements including Ni, Cr, Cd, Co, Cu, and Mn and low in nu...
Serpentinites, perhaps more than any other rock type, control the composition and evolution of the d...
none3noBackground and Aim: Biotic and abiotic factors contribute in shaping the distribution through...
Numerous studies have highlighted the fact that the bioavailability of potentially toxic trace eleme...
Approximately 25,000 acres have been mapped as serpentinite-derived soils in Maryland. While fertili...
Under closed geochemical conditions, the weathering of a serpentinite rock composed of serpentine (7...
Sulfide mineralization in the province of Trento (northeastern Italy) includes various mineral assem...
In the search for life on Mars near-surface soil environments may be important habitats for life acc...