After mineral exploitation the residual grinded and milled material, rich in sulphide minerals and heavy metals, is often left exposed to the atmospheric variables. This weathered mine waste material can lead to the formation of acid mine drainage (AMD) which has negative effects to the environment. The fractionation of stable isotope of metals such as Cu and Fe can be measured using innovative analytical techniques developed recently and could offer a detailed hindsight of the geochemical processes occurring in mine contaminated sites. Tailings profiles from Northern Sweden with high content of Cu and Fe sulphides and in different stages of weathering and/or remediation, along with plant and soil samples from a phytoremediation test site i...
Copper export and mobility in acid mine drainage are difficult to understand with conventional appro...
The cycling of iron (Fe) is often closely linked with that of carbon, nitrogen, phosphorus and manga...
We present results of an experimental study on Cu isotope fractionation during the reaction of aqueo...
After mineral exploitation the residual grinded and milled material, rich in sulphide minerals and h...
The distribution of the stable isotopes of Cu and Fe in nature is susceptible to isotope fractionati...
The change of the oxidation state of redox-sensitive elements is frequently associated with a change...
The oxidative weathering of sulfide minerals, like pyrite, at the Earth\u27s surface controls the fo...
The oxidative weathering of sulfide-rich rocks from mine wastes and from un-mined mineralized region...
We measured the Fe, Cu, and Zn isotopic compositions of the fluids generated during leaching experim...
During the last few decades, the stable copper isotope system (d65Cu) has gained attention because o...
Copper is an essential micronutrient for all organisms but may also be a pollutant. We studied the n...
Copper is an essential micronutrient for all organisms but may also be a pollutant. We...
Copper and Zn metals are produced in large quantities for different applications. During Cu producti...
In the South-West Europe (Iberian Pyrite Belt), acid mine drainage (AMD) processes are especially pr...
Copper (Cu) is an essential micronutrient for plants and many microorganisms, playing a key role in ...
Copper export and mobility in acid mine drainage are difficult to understand with conventional appro...
The cycling of iron (Fe) is often closely linked with that of carbon, nitrogen, phosphorus and manga...
We present results of an experimental study on Cu isotope fractionation during the reaction of aqueo...
After mineral exploitation the residual grinded and milled material, rich in sulphide minerals and h...
The distribution of the stable isotopes of Cu and Fe in nature is susceptible to isotope fractionati...
The change of the oxidation state of redox-sensitive elements is frequently associated with a change...
The oxidative weathering of sulfide minerals, like pyrite, at the Earth\u27s surface controls the fo...
The oxidative weathering of sulfide-rich rocks from mine wastes and from un-mined mineralized region...
We measured the Fe, Cu, and Zn isotopic compositions of the fluids generated during leaching experim...
During the last few decades, the stable copper isotope system (d65Cu) has gained attention because o...
Copper is an essential micronutrient for all organisms but may also be a pollutant. We studied the n...
Copper is an essential micronutrient for all organisms but may also be a pollutant. We...
Copper and Zn metals are produced in large quantities for different applications. During Cu producti...
In the South-West Europe (Iberian Pyrite Belt), acid mine drainage (AMD) processes are especially pr...
Copper (Cu) is an essential micronutrient for plants and many microorganisms, playing a key role in ...
Copper export and mobility in acid mine drainage are difficult to understand with conventional appro...
The cycling of iron (Fe) is often closely linked with that of carbon, nitrogen, phosphorus and manga...
We present results of an experimental study on Cu isotope fractionation during the reaction of aqueo...