Hyperaccumulator plants can be utilized as ‘metal crops’ in agromining operations. This emerging technology produces ‘bio-ore’ by growing ‘metal crops’ on sub-economic ore materials, such as natural ultramafic soils. In a typical application plant material is periodically harvested, followed by air-drying and incineration to produce the bio-ore intermediate. The bio-ore is of very high grade (>15 wt. % nickel), and of high purity, and may be processed into a number of different products (including nickel metal, nickel-based catalysts and pure nickel salts). Current research efforts from our team focus on Mediterranean climate field trials (Albania, Spain) and tropical climate field trials (Malaysia, Indonesia). Field-scale demonstrations ar...
Agromining is an emerging technology that utilizes selected ‘metal crops' (= hyperaccumulator plants...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Phytomining technology employs hyperaccumulator plants to take up metal in harvestable plant biomass...
Hyperaccumulator plants can be utilized as ‘metal crops’ in agromining operations. This emerging tec...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr), and cobalt (Co) and deficient...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr) and cobalt (Co) and deficient ...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Hyperaccumulator plants (“metal crops”) can be used for selective extraction of Ni from low-grade re...
Serpentine (i.e. ultramafic) outcrops in Europe cover >10,000 km(2) and have a low fertility and low...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Agromining involves growing selected hyperaccumulator plant species ('metal crops') on low-grade ore...
Agromining is an emerging technology that utilizes selected ‘metal crops' (= hyperaccumulator plants...
Agromining is an emerging technology that utilizes selected ‘metal crops' (= hyperaccumulator plants...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Phytomining technology employs hyperaccumulator plants to take up metal in harvestable plant biomass...
Hyperaccumulator plants can be utilized as ‘metal crops’ in agromining operations. This emerging tec...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Agromining is the chain of processes of phytoextraction of economically valuable elements by selecte...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr), and cobalt (Co) and deficient...
Ultramafic soils are typically enriched in nickel (Ni), chromium (Cr) and cobalt (Co) and deficient ...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Hyperaccumulator plants (“metal crops”) can be used for selective extraction of Ni from low-grade re...
Serpentine (i.e. ultramafic) outcrops in Europe cover >10,000 km(2) and have a low fertility and low...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Agromining involves growing selected hyperaccumulator plant species ('metal crops') on low-grade ore...
Agromining is an emerging technology that utilizes selected ‘metal crops' (= hyperaccumulator plants...
Agromining is an emerging technology that utilizes selected ‘metal crops' (= hyperaccumulator plants...
Serpentine (i.e. ultramafic) outcrops in Europe cover more than 10,000 km2 and have a low-fertility ...
Phytomining technology employs hyperaccumulator plants to take up metal in harvestable plant biomass...