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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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Requirements and Implications of Nodule Mining on Deep-Sea Deposits and EnvironmentBy Sebastian Ernst Volkmann, Felix Lehnen
"INTRODUCTIONWhile today’s mine planning of land-based ore deposits follows methods, which are well established, mining standards for the deep-sea have not established. Having gained a basic understan
Jan 1, 2017
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Marine Protected Areas within the Clarion-Clipperton ZoneBy Charles L. Morgan
"In 2012 the International Seabed Authority (ISA) established nine “Areas of Particular Environmental Interest” (APEIs) for consideration as future Marine Protected Areas to help preserve the biodiver
Jan 1, 2017
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Application Of A Maritime Boundary Database To Ocean Mining PlanningBy Hal Palmer
A number of Articles contained in the United Nations Convention on the Law of the Sea III (UNCLOS) bear directly on legal issues related to the recovery of mineral deposits on the ocean floor. Minera
Jan 1, 2000
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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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The Aggregate Potential Of The Scotian Shelf, CanadaBy Gordon B. J. Fader
A regional assessment of the aggregate potential of the Scotian Shelf is presently being funded through a Canada-Nova Scotia Cooperation Agreement on Mineral Development. This assessment includes test
Jan 1, 1995
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Gorda Ridge And Mid-Atlantic Ridge: New Frontiers For Undersea ResearchBy Peter A. Rona
Investigations of the Gorda Ridge within the proclaimed U.S. Exclusive Economic Zone off northern California and southern Oregon, and the Mid-Atlantic Ridge extending along the center of the Atlantic
Jan 1, 1988
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Offshore And Land Mineral ResourcesBy Frank Manheim
The purpose of this presentation is to review the history of offshore non- fisheries resource development since World War II, as an introduction to a planned symposium on offshore resources scheduled
Jan 1, 1995
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An Article 76-Based Definition Of The U.S. Atlantic Continental ShelfBy G. B. Carpenter
The United Nations Law of the Sea (LOS) Convention includes provisions (Article 76) for establishing the outer limits of a coastal State's continental shelf and for denoting the seaward extent of
Jan 1, 1995
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Discovery Of Hydrothermal Fields At The Central Indian Ridge (Gemino Project)In 1983, the GEMINO research project (Geothermal Metallogenesis Indian Ocean) was initiated in order to locate and evaluate sites of recent or fossil hydrothermal activity in the largely unexplored In
Jan 1, 1989
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Characteristics of Oceanic Core Complexes (OCCs) in Central Indian Ridge (8 °–12 °S) by High-Resolution Bathymetry and Backscatter ImagesBy Seung-Kyu Son, Michael T. Chandler, Youngtak Ko, Gyuha Hwang
Over the past decade, sea-floor hydrothermal vent fields have been studied by many researchers because of their commercial potential of mineral resources and the origins of Earth’s life. Approximately
Jan 1, 2018
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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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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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Impacts Of Overboard Screening And Associated Benthic Biological Community Structure In Relation To Marine Aggregate ExtractionBy R. C. Newell
The primary objective of this study was to establish the fate and distribution of material rejected during marine aggregate dredging, and the extent to which this is associated with spatial changes in
Jan 1, 2004
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Spatial And Temporal Variability Of Physico-Chemical Parameter In The Northeast Equatorial Pacific OceanBy Seung-Kyu Son
This study was investigated about physico-chemical parameter such as water temperature, salinity, inorganic nutrients and total organic carbon (TOC). CTD (Model: Sea-Bird 911 Plus) castings were carri
Jan 1, 2005
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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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Eyes in the Deep – How Autonomous Underwater Vehicles Can Support & Enhance Deep Sea Mining OperationsBy Stephen Hall
Introduction Marine Autonomous Systems are making rapid progress from their early years as research tools for university departments & government institutes into having a growing number of real-world
Jan 1, 2018
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Environmental Influences On Metal Content Of Ferromanganese Crusts In The Central Tropical South Pacific: Implications For Prospecting And Resource AssessmentBy Philomene Verlaan
Analysis of the relationship between environmental parameters and the content of Mn, Ni, Co, Cu, Fe and Zn in ferromanganese crusts permits improved identification of locations to prospect for crusts
Jan 1, 2001
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Influence Of Plate Movement And Oceanic Environment Change On Growth Of Ferromanganese Crust Formed In The Seamounts Of Western Pacific: Implication For Shrinkage Of Equatorial High Productivity Zone?By Jonguk Kim
Texture and geochemical composition of hydrogenous ferromanganese crust from relatively adjacent three seamounts (OSM2 at 157°35'E, 13°55'N, Lomilik at 161°37'E, 11°42'N and Lemkei
Jan 1, 2003