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Plumes of Deep-Sea Mining: What Do We Know?
By Georgy Cherkashov, Livia Ermakova
Active development of the exploration and further exploitation of deep-sea minerals requires special emphasis on the protection of the marine environment. The complexity of this subject lies in the fa
Jan 1, 2018
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Contrasting Styles Of Marine Diamond Mineralisation Requiring Different Mining Methodologies - A Case Study From Concession 2B South African West Coast
By P. C. Hollick
Two marine diamond deposits on concession 2b off Namaqualand along the South African Coast, have been systematically mined over the past year by the mv Moonstar. The two deposits, Smith?s Ulcer and We
Jan 1, 1998
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Preliminary Economic Evaluation of Deep-sea REE Mud Mining
By Tetsuo Yamazaki
Deep-sea rare-earth element-rich mud (REE Mud) distributes in pelagic clayey sediment column on ocean seafloor at 4,000-6,000 m deep. The thickness ranges 5-80 m and the burial depth 0-100 m. The REE
Sep 14, 2011
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Microtexture Mineral Analyses – A Preparatory Stage in SMS Mineral Processing
By Bjørn Eske Sørensen, Kristian Drivenes, Przemyslaw Kowalczuk, Kurt Aasly, Gavyn Rollinson, Ben Snook
Efficient and successful mineral processing is dependent on detailed knowledge of the materials and minerals that are to be separated and concentrated. Common bulk methodologies such as XRD and XRF ar
Jan 1, 2018
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Geochemistry Of Fluids From Southern Kermadec Frontal Arc Hydrothermal Systems
By Gary J. Massoth
Are hydrothermal emissions from subduction-related volcanic arcs important to the total hydrothermal burden of the oceans? While historical observations of hydrothermal venting of fluids at mid-ocean
Jan 1, 2001
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Present Status Of Offshore Phosphate Deposits, Atlantic Continental Margin
By Stanley R. Riggs
Phosphate deposits on the southeastern U.S. coastal plain have long been the major force in world phosphate markets. World markets continue to grow, but the role of U.S. resources is rapidly declining
Jan 1, 1988
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Magmatic Fluids In Seafloor Volcanic Rocks: An Enriched Metal Source For 'Giant' Ore Deposits?
By Kaihui Yang
Volcanogenic massive sulfide deposits are generally considered to have been formed by hydrothermal fluids that leach ore metals out of footwall rocks. However, the necessity for a metal-rich magmatic
Jan 1, 2011
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First Australian Offshore Mineral Locations Map
By Yanis Miezitis, Gerald Mueller, Timothy F. McConachy, Ronald G. Sait, Keith R. Porritt, William J. McKay
In November 2004, Australia lodged with the United Nations Commission on the Limits of the Continental Shelf possible new maritime boundaries in relation to Australia’s continental shelf extending b
Aug 24, 2006
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Ocean Minerals’ Cook Island Cobalt Project – Enabling the EV Revolution
By Hans Smit
Start here.
Jan 1, 2018
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Design Considerations for Deep Sea Mining Umbilicals
By Sander van Leeuwen
Outline: · De Regt Marine Cables. · The link between system requirements and umbilical requirements (which system requirements have the largest impact on the umbilical design). · Design options for de
Jan 1, 2018
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Likely Directions In Deep Ocean Mining To 2010
By David Heydon
The big money is backing both manganese nodules and manganese crusts as the most likely deep ocean mining development by 2010, but seafloor massive sulphides of copper/gold/zinc offer an alternative b
Jan 1, 2004
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Hydrothermal Exploration along the Northern Central Indian Ridge, 8°-12° S: Preliminary Results of Bathymetry, Volcanic Rock, and Hydrothermal Plume
By Jonguk Kim
Hydrothermal exploration aboard the R/V Onnuri was performed along the northern Central Indian Ridge (CIR) between 8°S and 12°S in January 2010. The main objectives of this first Korean research cruis
Jan 1, 2010
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A Preliminary Look At The OMCO Data Base
By Charles L. Morgan
In a commercial effort to characterize deep seabed manganese deposits in the Clarion-Clipperton region of the northeastern tropical Pacific, Ocean Mineral s Company carried out 16 expeditions to the r
Jan 1, 1991
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Deep-Sea Mining Impacts above the Surface: Quantifying the fuel consumption and associated air pollution of a potential commercial deep-sea manganese nodule mining operation in the Clarion-Clipperton Zone
By Andrea Koschinsky, Luise Heinrich
(for an oral presentation) Activities for preparing future deep-sea mining offer the unique opportunity to study environmental conditions and anticipate adverse environmental impacts prior to the comm
Jan 1, 2018
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Precious Metals In Seafloor Hydrothermal Deposits
By R. Moss
Gold and silver are important byproducts of mining volcanogenic massive sulfide (VMS) deposits. Both metals occur in VMS deposits ranging in age from the Archean to the currently forming massive sulfi
Jan 1, 2011
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Impact Estimation Of Methane Hydrate Utilization On Atmospheric Carbon Emissions By Using Mass Balance Eco-Model
By Tetsuo Yamazaki
Natural methane hydrate has been scientifically studied as a global carbon reservoir. However, in Japan, it?s potential as an energy resource has been industrially highlighted, because there are few
Jan 1, 2004
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Black Sands In The Pacific Mexican Littoral
By Arturo Carranza Edwards
One hundred ninety nine beach face sand samples from an equal number of beaches from the Mexican Pacific were studied. Based on petrological and chemical analysis some locations have been studied in m
Jan 1, 1994
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Polymetallic Nodules as a Future Deep Sea Mineral Resource
By U. Schwarz-Schampera, C. Rühlemann, H. -R. Kudrass
Within 2006 BGR will conclude a contract with the UN International Seabed Authority (ISA) for the exploration of polymetallic nodules. The contract covers an area in the Pacific nodule belt between th
Aug 24, 2006
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Fine-Scale Dating And Chemical Variations Of Deep-Sea Ferromanganese Crusts In The Western And Central Pacific
By Akira Usui
Fine-scale geochemical, mineralogical, and structural variations in ferromanganese crusts are believed to be the long-range records of paleoceanographic conditions and geological events on the small t
Jan 1, 2002
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Commercial And Technical Realities Of Deep Ocean Mining
By Jon Machin
?ORE? is defined as ?mineral/s that can be mined at a profit?. So, what is ORE at 2,000 m water depth? Is it 5% Copper or 1.8% Nickel/Cobalt? One of the key factors that determine what is ORE, pr
Jan 1, 2004