Manganese oxide minerals can become enriched in a variety of metals through adsorption and redox processes, and this forms the basis for a close geochemical relationship between Mn oxide phases and Co. Since oxalate-producing fungi can effect geochemical transformation of Mn oxides, an understanding of the fate of Co during such processes could provide new insights on the geochemical behaviour of Co. In this work, the transformation of Mn oxides by Aspergillus niger was investigated using a Co-bearing manganiferous laterite, and a synthetic Co-doped birnessite. A. niger could transform laterite in both fragmented and powder forms, resulting in formation of biomineral crusts that were composed of Mn oxalates hosting Co, Ni and, in transforme...
The abundance of limonitic laterite ores in tropical and sub-tropical areas represents a large, and ...
Oxidation of manganese(II) to manganese(III,IV) demands oxidants with very high redox potentials; co...
Mn(IV)-oxides are highly redox-active minerals, which are often reductively dissolved during biogeoc...
Manganese oxide minerals can become enriched in a variety of metals through adsorption and redox pro...
This research was developed during the PhD studies of Agustín Solano Arguedas in the University of M...
In this study, the ability of the geoactive fungus Aspergillus niger to colonize and transform manga...
This work aimed to examine the bioleaching of manganese oxides at various oxidation states (MnO, MnO...
The ability of the soil fungi Aspergillus niger and Serpula himantioides to tolerate and solubilize ...
Microbially mediated oxidation of Mn(II) to Mn(III/IV) oxides influences the cycling of metals and r...
Manganese (Mn) oxides are environmentally abundant, highly reactive mineral phases that mediate the ...
Manganese oxides occur in a wide range of environmental settings either as coatings on rocks, sedime...
Manganese oxides occur in a wide range of environmental settings either as coatings on rocks, sedime...
Manganese oxides are often highly reactive and easily reduced, both abiotically, by a variety of ino...
In this research, the capabilities of culture supernatants generated by the oxalate-producing fungus...
The abundance of limonitic laterite ores in tropical and sub-tropical areas represents a large, and ...
Oxidation of manganese(II) to manganese(III,IV) demands oxidants with very high redox potentials; co...
Mn(IV)-oxides are highly redox-active minerals, which are often reductively dissolved during biogeoc...
Manganese oxide minerals can become enriched in a variety of metals through adsorption and redox pro...
This research was developed during the PhD studies of Agustín Solano Arguedas in the University of M...
In this study, the ability of the geoactive fungus Aspergillus niger to colonize and transform manga...
This work aimed to examine the bioleaching of manganese oxides at various oxidation states (MnO, MnO...
The ability of the soil fungi Aspergillus niger and Serpula himantioides to tolerate and solubilize ...
Microbially mediated oxidation of Mn(II) to Mn(III/IV) oxides influences the cycling of metals and r...
Manganese (Mn) oxides are environmentally abundant, highly reactive mineral phases that mediate the ...
Manganese oxides occur in a wide range of environmental settings either as coatings on rocks, sedime...
Manganese oxides occur in a wide range of environmental settings either as coatings on rocks, sedime...
Manganese oxides are often highly reactive and easily reduced, both abiotically, by a variety of ino...
In this research, the capabilities of culture supernatants generated by the oxalate-producing fungus...
The abundance of limonitic laterite ores in tropical and sub-tropical areas represents a large, and ...
Oxidation of manganese(II) to manganese(III,IV) demands oxidants with very high redox potentials; co...
Mn(IV)-oxides are highly redox-active minerals, which are often reductively dissolved during biogeoc...