The nodules are spherical bodies that are scattered within the sedimentary zone of the seabed, and their growth is closely associated with the biogeochemical processes and water sediments. These nodules are mainly composed of Mn, Fe, SiO2, Ca, Ni, Cu, Co and Al. Manganese nodules are an excellent source of base metals and sought-after and rare elements and the fact that they are used as a base elements matrix will be in high demand in industry. Previous studies have shown that primary con-centrations of chemical such as Fe in the system are beneficial for increas-ing manganese extraction. However, it is necessary to optimize the opera-tional parameters so as to maximise Mn recovery. This work investigates the effect of using of tailings, ob...
The effect of grinding time on the particle size distribution and chemical composition of manganese ...
Mn nodule samples were decomposed with HCl and fumed with H2S04. SiO2 was estimated by the standard ...
The uptake of Ni and Co in the hydrous Mn oxide or the amorphous Fe-oxide phases of ferromanganese d...
Based on the results obtained from a previous study investigating the dissolution of Mn from marine ...
Manganese nodules are an attractive source of base metals and critical and rare elements and are req...
Polymetallic sea nodule is a good source of manganese having 22.3% Mn, 5.4% Fe, 6.14% Si, 1.1% Cu, 1...
Most of the extraction processes developed for the polymetallic sea nodules concentrated mainly on t...
Nodular mineral deposits found in large quantities on the Ocean floor area are the potential sourc...
A complete processing method has been experimentally developed at laboratory scale for the future ex...
A pilot plant for processing of polymetallic sea nodule on 500 Kg/day scale has been set up by Depar...
This article reviews the state of the art in processing and extracting ocean manganese nodules. It b...
Leached sea nodules residue was used for the present study for exploring its utilization. The residu...
An existing sequential extraction scheme for particulate iron (Fe) is evaluated for manganese (Mn) u...
Polymetallic sea nodule contains 1.1% Cu, 1.15% Ni, 0.076% Co, 5.4% Fe, 22.3% Mn & others. World-wid...
Ocean manganese nodules are rich in Mn, and also contain the strategic metals Cu, Co, and Ni. In thi...
The effect of grinding time on the particle size distribution and chemical composition of manganese ...
Mn nodule samples were decomposed with HCl and fumed with H2S04. SiO2 was estimated by the standard ...
The uptake of Ni and Co in the hydrous Mn oxide or the amorphous Fe-oxide phases of ferromanganese d...
Based on the results obtained from a previous study investigating the dissolution of Mn from marine ...
Manganese nodules are an attractive source of base metals and critical and rare elements and are req...
Polymetallic sea nodule is a good source of manganese having 22.3% Mn, 5.4% Fe, 6.14% Si, 1.1% Cu, 1...
Most of the extraction processes developed for the polymetallic sea nodules concentrated mainly on t...
Nodular mineral deposits found in large quantities on the Ocean floor area are the potential sourc...
A complete processing method has been experimentally developed at laboratory scale for the future ex...
A pilot plant for processing of polymetallic sea nodule on 500 Kg/day scale has been set up by Depar...
This article reviews the state of the art in processing and extracting ocean manganese nodules. It b...
Leached sea nodules residue was used for the present study for exploring its utilization. The residu...
An existing sequential extraction scheme for particulate iron (Fe) is evaluated for manganese (Mn) u...
Polymetallic sea nodule contains 1.1% Cu, 1.15% Ni, 0.076% Co, 5.4% Fe, 22.3% Mn & others. World-wid...
Ocean manganese nodules are rich in Mn, and also contain the strategic metals Cu, Co, and Ni. In thi...
The effect of grinding time on the particle size distribution and chemical composition of manganese ...
Mn nodule samples were decomposed with HCl and fumed with H2S04. SiO2 was estimated by the standard ...
The uptake of Ni and Co in the hydrous Mn oxide or the amorphous Fe-oxide phases of ferromanganese d...