Manganese nodules of the Clarion-Clipperton Fracture Zone (CCFZ) in the NE Pacific Ocean are highly enriched in Ni, Cu, Co, Mo and rare-earth elements, and thus may be the subject of future mining operations. Elucidating the depositional and biogeochemical processes that contribute to nodule formation, as well as the respective redox environment in both, water column and sediment, supports our ability to locate future nodule deposits and evaluates the potential ecological and environmental effects of future deep-sea mining. For these purposes we evaluated the local hydrodynamics and pore-water geochemistry with respect to the nodule coverage at four sites in the eastern CCFZ. Furthermore, we carried out selective leaching experiments at the...
Ferromanganese nodules are authigenic marine sediments that form over millions of years from the pre...
Ferromanganese nodules are polymetallic ore deposits considered to be archives of paleoceanographic ...
Gravity cores recovered from Manganese Nodule Project site H (6°33'N, 92°49'W) show marked downcore ...
Manganese nodules of the Clarion-Clipperton Fracture Zone (CCFZ) in the NE Pacific Ocean are highly ...
Manganese nodules of the Clarion–Clipperton Fracture Zone (CCFZ) in the NE Pacific Ocean are highly ...
The manganese nodule belt within the Clarion and Clipperton Fracture Zones (CCZ) in the abyssal NE P...
The manganese nodule belt within the Clarion and Clipperton Fracture Zones (CCZ) in the abyssal NE P...
Highlights • This paper investigates the dissolution of Mn nodules buried in suboxic sediments. ...
The abyssal seafloor in the equatorial Pacific Ocean bounded by the Clarion and Clipperton Fracture ...
Mn- micronodules and nodules of the Clarion-Clipperton zone (Pacific Ocean) are composed of 10 Å and...
Ferromanganese nodules have long been considered an attractive source for Mn, Co, Ni and Cu and, pot...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Ferromanganese nodules are authigenic marine sediments that form over millions of years from the pre...
Ferromanganese nodules are polymetallic ore deposits considered to be archives of paleoceanographic ...
Gravity cores recovered from Manganese Nodule Project site H (6°33'N, 92°49'W) show marked downcore ...
Manganese nodules of the Clarion-Clipperton Fracture Zone (CCFZ) in the NE Pacific Ocean are highly ...
Manganese nodules of the Clarion–Clipperton Fracture Zone (CCFZ) in the NE Pacific Ocean are highly ...
The manganese nodule belt within the Clarion and Clipperton Fracture Zones (CCZ) in the abyssal NE P...
The manganese nodule belt within the Clarion and Clipperton Fracture Zones (CCZ) in the abyssal NE P...
Highlights • This paper investigates the dissolution of Mn nodules buried in suboxic sediments. ...
The abyssal seafloor in the equatorial Pacific Ocean bounded by the Clarion and Clipperton Fracture ...
Mn- micronodules and nodules of the Clarion-Clipperton zone (Pacific Ocean) are composed of 10 Å and...
Ferromanganese nodules have long been considered an attractive source for Mn, Co, Ni and Cu and, pot...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Surface sediments from the Clarion Clipperton Zone, central Pacific were analyzed for solid-phase Mn...
Ferromanganese nodules are authigenic marine sediments that form over millions of years from the pre...
Ferromanganese nodules are polymetallic ore deposits considered to be archives of paleoceanographic ...
Gravity cores recovered from Manganese Nodule Project site H (6°33'N, 92°49'W) show marked downcore ...