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The GIS Model of the Fe-Mn Crust Origin on the Seamounts from the Pacific Ocean Magellan SeamountsBy H. I. Chesalova, M. Ye. Melnikov, A. M. Asavin
The discovery of iron-manganese ores on the surface of underwater mountains was made more than a half century ago. During this time the basic ideas about the thermodynamics of the processes of hydroch
Sep 24, 2006
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Elemental Correlations And Distributions Of KODOS Ferromanganese Nodules, Focused On SiO2 And CaOAlthough Mn, Fe, Cu, Ni, and Co have been the main interests since the ferromanganese nodules had been found, the other major components such as Si and Ca might be very important controlling factors i
Jan 1, 2004
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Recent Developments; U.S. Atlantic Shelf Marine Mineral SurveysBy Andrew E. Grosz
The Atlantic Continental Shelf (ACS) of the United States includes about 391,000 km2 extending from the shoreline to the 200-m isobath. It varies in width from a fraction of a kilometer (offshore of s
Jan 1, 1988
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Conceptual Study Of Innovative Ecological Manganese Nodule Mining System ? IntroductionBy Tetsuo Yamazaki
Manganese nodules on deep ocean floors have continuously received attention as potential sources for strategic metals such as Co, Ni, Cu, and Mn, due to their vast distribution and relatively higher m
Jan 1, 2011
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The Resource Potential of the Slow-Spreading TAG Segment at 26°N, Mid-Atlantic Ridge: Evidence from AUV-Based ExplorationBy Isobel Yeo, Florent Szitkar, Sven Petersen, Sebastian Graber, Nico Augustin, Marcel Rothenbeck, John Jamieson
"INTRODUCTIONSeafloor massive sulfides (SMS) along mid-ocean ridges are often seen as a possible future contribution to a secure metal supply for global human needs. A growing interest over the past f
Jan 1, 2017
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Why Are Some Seafloor Polymetallic Sulfide Sites Particularly Rich In Gold?By Raymond A. Binns
Exploration for undersea polymetallic sulfide mineral resources with high economic potential would be more effective given an ability to predict sites with particularly high gold contents (averaging s
Jan 1, 2005
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Alteration In The Nodule Coverage Due To Biogenic Disturbance In The IOM Exploration Area: Some Environmental ConcernsBy Valcana Stoyanova
Deep-sea mining of polymetallic nodules are expected to produce serious impact on benthic ecosystem due to removal of nodules, sediments and associated fauna by means of collector, and subsequently, b
Jan 1, 2011
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Dating of Iron Oxide Crusts in the Study of Submarine Hydrothermal Events and Mineral Deposition ? IntroductionBy Robert G. Ditchburn
The NW caldera hydrothermal vent field at Brothers volcano, of the Kermadec-Tonga arc, has associated massive sulfide mineralization. This includes an abundance of black smoker chimneys that contain s
Jan 1, 2010
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Kennecott?s Cuprion Process For Manganese NodulesBy Gale L. Hubred
Kennecott?s Ledgemont Laboratory developed the Cuprion Process to recover metal values from manganese nodules in the early 1970s. A reducing leach of monovalent cuprous ion attacks the manganese oxid
Jan 1, 2005
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Arctic Ocean Fe-Mn Crusts and Nodules: A Genetic Model and Final AnalysesBy Natalia Konstantinova, Kira Mizell, James R. Hein, Georgy Cherkashov, Amy Gartman, Mariah Mikesell
"Two types of metallic deposits have been found in the deep Arctic Ocean: Hydrothermal Fe, Cu, and Zn sulfide deposits form along Gakkel Ridge in the Eurasia Basin and associated ridges between Greenl
Jan 1, 2017
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Rare and Valuable Metals for High-Tech Applications Found in Marine Ferromanganese Nodules and Crusts: Relationships To Genetic Endmembers - IntroductionBy Andrea Koschinsky
Ferromanganese crusts have traditionally been considered a potential ore for Co, whereas ferromanganese nodules have typically been considered a potential ore for Ni and Cu. However, both nodules and
Jan 1, 2010
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Summit Construction, Caldera Formation, Cone Growth, Hydrothermal Processes, and Sulfide Deposition on Submarine Volcanoes of the Southern Kermadec ArcBy Alexander Malahoff
Six active Kermadec arc submarine volcanoes located between 34°S and 36°30’S were mapped and sampled by an interdisciplinary inter-institutional research team between April and July 2005 using subme
Aug 24, 2006
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An Innovative Seafloor Drill System For Offshore Geotechnical Site Investigation And Seafloor Mineral ExplorationBy Tim J. Boyd
Gregg Marine, Inc. (headquartered in Signal Hill, California) has recently introduced an innovative seafloor drill system for offshore geotechnical site investigation and seafloor mineral exploration.
Jan 1, 2011
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Dynamic Mineral Recrystallization – Implications for Sustainable Trace Metal Recovery from Deep-Sea Ferromanganese DepositsBy Tobias Hens, Andrew Frierdich, Barbara Etschmann, Joël Brugger, Barrie Bolton
"Ferromanganese (Fe-Mn) nodules and crusts are prime targets for future deep-sea mining ventures due to their unusual enrichment of critical metals, such as Ni, Co, Cu, Ti, Te, Zr, Hf, Nb, Y, and REE.
Jan 1, 2017
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Finding Inactive And Sub-Seafloor Massive Sulfide Deposits In Deep Ocean FloorsBy Fernando J. A. S. Barriga
Exploration for active seafloor hydrothermal vent fields has been highly successful, and more than 300 such fields have been discovered to date. Some will most probably be mined, given their high meta
Jan 1, 2011
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Seafloor Hydrothermal Mineralization: Retrospect And ProspectBy P. A. Rona
The first hydrothermal mineral deposits found at a seafloor spreading center were discovered in the Red Sea by multi-national research vessels between 1963 and 1965. At that time, the deposits were co
Jan 1, 1989
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Sediment Geochemistry Associated With Polymetallic Nodules In The Central Mexican Pacific ? IntroductionThe chemical composition of the nodules varies with the type of manganese minerals and the size and characteristics of their nucleus, but those who have an economic interest have the following composi
Jan 1, 2011
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Geochemical Characteristics Of Deep-Sea Sediments From The NE Equatorial Pacific And Its Paleoceanographic ImplicationsBy Sung-Hyun Park
Core sediment samples collected from the KODOS area of the Clarion-Clipperton Fracture Zone in the NE Equatorial Pacific were analyzed for chemical and mineralogical compositions to investigate the de
Jan 1, 2003
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Fe-Mn Nodules From The Finnish Bay (Baltic Sea): Exploration And Exploitation ExperienceBy Georgy Cherkashov
Shallow-water formation of marine ferromanganese nodules as well as their deep-water analogues is found throughout the global ocean. The Baltic Sea is a key province for the shallow-water type of mari
Sep 14, 2011
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Sediment Geochemistry Associated With Polymetallic Nodules In The Central Mexican Pacific (b3c525db-f011-4388-9f02-d4c9c8866c14)The chemical composition of the nodules varies with the type of manganese minerals and the size and characteristics of their nucleus but those who have an economic interest have nucleus, generally : M
Sep 14, 2011