A post Ferro-nickel mining land management needs to recognize the physical, chemical characteristics of soil and plants that grow naturally by tolerating the levels of heavy metals. The objective of this study were to: i) investigate and evaluate the natural process of plant colonization on abandoned ferro-nickel mining sites located on ultramafic substrate; to ii) understand the relationship between soil properties and species distribution and to iii) assess the potential of hyperaccumulator plants for the soil phytoremediation. This area was divided into five 100 m(2) plots that were representatives of the variability of the site, based on localization, land use and total vegetative cover. For each plot, the physicochemical characteristi...
This study assessed and classified the phytoremediation potentials of selected plant species around ...
Mining is an important source of metal pollution in the environment and abandoned mines are extremel...
Mining activities can result in a pollution legacy of metal and metalloid containing soils and waste...
Aim: The identification and use of hyperaccumulator plants in mining projects has been recognized as...
Aim: The identification and use of hyperaccumulator plants in mining projects has been recognized as...
Initial experiments using Mediterranean Ni-hyperaccumulator plants for the purpose of phytomining we...
Urbanization, industrialisation and agricultural practices have resulted in soil contamination with ...
The release of large amounts of toxic metals in the neighboring sites of abandoned mine areas repres...
Ultramafic areas exist in large blocks or as small outcrops separated from other geological substrat...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr), and cobalt (Co) and deficient...
The release of large amounts of toxic metals in the neighboring sites of abandoned mine areas repres...
Contamination of soil and water by various heavy metals such as Cd, Pb, Ni, Cu, and Fe is increasing...
In this paper, we evaluated the distribution of heavy metals (Pb, Cu, Zn and Fe) in the topsoil and ...
Summary. Weedy and ruderal plants can be used in studies of metal pollution of soil, water and air a...
This study aimed to determine the concentrations of ten metals (Mn, Ni, Ca, Mg, Fe, Zn, Cr, Pb, Cd, ...
This study assessed and classified the phytoremediation potentials of selected plant species around ...
Mining is an important source of metal pollution in the environment and abandoned mines are extremel...
Mining activities can result in a pollution legacy of metal and metalloid containing soils and waste...
Aim: The identification and use of hyperaccumulator plants in mining projects has been recognized as...
Aim: The identification and use of hyperaccumulator plants in mining projects has been recognized as...
Initial experiments using Mediterranean Ni-hyperaccumulator plants for the purpose of phytomining we...
Urbanization, industrialisation and agricultural practices have resulted in soil contamination with ...
The release of large amounts of toxic metals in the neighboring sites of abandoned mine areas repres...
Ultramafic areas exist in large blocks or as small outcrops separated from other geological substrat...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr), and cobalt (Co) and deficient...
The release of large amounts of toxic metals in the neighboring sites of abandoned mine areas repres...
Contamination of soil and water by various heavy metals such as Cd, Pb, Ni, Cu, and Fe is increasing...
In this paper, we evaluated the distribution of heavy metals (Pb, Cu, Zn and Fe) in the topsoil and ...
Summary. Weedy and ruderal plants can be used in studies of metal pollution of soil, water and air a...
This study aimed to determine the concentrations of ten metals (Mn, Ni, Ca, Mg, Fe, Zn, Cr, Pb, Cd, ...
This study assessed and classified the phytoremediation potentials of selected plant species around ...
Mining is an important source of metal pollution in the environment and abandoned mines are extremel...
Mining activities can result in a pollution legacy of metal and metalloid containing soils and waste...