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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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On The Possibility Of Offshore Mineral Occurrences In Greenland WatersBy P. U. W. Appel
Despite the very large offshore Exclusive Economic Zone (EEZ) area of Greenland (in excess of 2 mill. km2) virtually no work has been carried out on marine minerals on the ocean floor. Apart from a si
Jan 1, 1988
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Current Status Of Korean Deep Seabed Mining In KoreaBy Jung-Keuk Kang
Recently, the Korean government prepared a strategy for deep seabed mining, which consists of three stages for 20 years until 2010. The first step of the program is focused to conduct deep seabed expl
Jan 1, 1992
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A Remotely Operated Seafloor Coring SystemBy Richard Petters
Williamson and Associates, Inc of Seattle, Washington has recently built a remotely operated seafloor coring system for Nichiyu Giken Kogyo Ltd and the Metal Mining Agency of Japan (MMAJ). The system
Jan 1, 1996
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The Developing Deep Sea Mining SystemsBy Hans Smit
The face of mining as we know is changing as mining companies all over the globe realize the reality of accessing the vast mineral wealth contained on, and under, our ocean floors. With some land base
Jan 1, 2011
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Weathering of Sulfides in a Deep-Sea Environment: A Case StudyBy Rolf B. Pedersen, Ingunn H. Thorseth, Håkon Dahle, Ingeborg E. Øklandm, Linn M. B. Olsen
Weathering of sulfides and the generation of acid mine drainage (AMD) is a well- known environmental issue in on-land mining. The process can release potentially toxic compounds and heavy metals to th
Jan 1, 2018
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Special Report On Stockpile 2000 WorkshopBy Michael J. Cruickshank
A workshop to examine recovery systems for selected strategic and critical materials in the U.S. National Seabeds for the National Defense Stockpile in the 21st Century was held in Hawaii September 26
Jan 1, 1991
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The Marine Minerals Technology Center - New Research Programs For Developing Continental Shelf And Deep Ocean MineralsBy J. R. Woolsey
Research grants of The Marine Minerals Technology Center (MMTC) are directed toward development of the technology 'for exploration, mining, and processing of non-fuel mineral resources within the
Jan 1, 1989
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Some Results Of The First Commercial Use Of Geophysics To Explore For Seafloor Massive Sulphide (SMS) Deposits: The Suzette Hydrothermal Vent Field, Eastern Manus Basin, PNGBy Justin C. I. Baulch
In October 2004 Placer Dome entered into an exploration farm-in agreement with Nautilus Minerals, to explore for Submarine Massive Sulphide (SMS) deposits on Nautilus? PNG exploration tenements. Plac
Jan 1, 2005
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Recent Progress in the Geological Study of Ferromanganese Deposits in the Northwestern Pacific Seamounts: Updated Geological Maps and Seabed ROV ObservationsBy Makoto Yuasa, Akira Usui, Shipboard Scientists of SIP Cruises, Atsushi Suzuki, Shingo Kato, Kyoko Yamaoka, Akira Nishimura, Kiyo Kisimoto, Katsuhiko Suzuki
"We report here on current topics of our project, based on the results of recent cruises and laboratory analysis, about the diversity of compositions and configurations of the hydrogenetic ferromangan
Jan 1, 2017
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Deep-Sea Mining: Intersections with Other ActivitiesBy Det Juridiske Fakultet, Maria Madalena das Neves
The ocean is increasingly seen as the answer for a myriad of challenges facing humankind. In effect, in addition to being vital for transportation and communication, the oceans contain living and non-
Jan 1, 2018
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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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Offshore Aggregate And Placer Drill For CCOP/SOPACBy J. R. Woolsey
In late 1988, the Committee for Coordination of Joint Prospecting for Mineral Resources in South Pacific Offshore Areas (CCOP/SOPAC), Suva, Fiji, consulted the Continental Shelf Division of the Marine
Jan 1, 1989
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High Resolution Seafloor Imaging in the Southern Indian Ocean: Insights to Economic Mineral Distribution and Seafloor Ecology from Data Acquired in the Search for MH370By Paul Kennedy, Daniel R. McConnell, Ruth Price
"The underwater search for the passenger aircraft MH 370 produced rare high resolution datasets of the ocean floor of extraordinary size and detail. The survey design and operations were for sole purp
Jan 1, 2017
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Hydrothermal Activity, Sea Level and Glaciation: Evidence of Correlation from the Atlantic SMSBy Alexey Musatov, Georgy Cherkashov
Based on geochronological data it was confirmed that hydrothermal discharge has an episodic character: active and inactive periods of the seafloor massive sulfides (SMS) formation alternate (Cherkasho
Jan 1, 2018
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Marine Minerals Potential in the Pacific Islands Region and the Proposed Management StrategyBy Akuila K. Tawake
The occurrences of polymetallic minerals within the Exclusive Economic Zones (EEZs) of many Pacific Island Countries (PICs) have been confirmed through marine scientific researches and seabed minerals
Jan 1, 2010
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Heavy-Mineral Resources Offshore Of The Southeast Atlantic CoastBy Andrew E. Grosz
The United States is dependent on foreign imports for about 80 percent of its ilmenite, about 60 percent of its rutile, and virtually all of its monazite. Nearshore marine sand deposits and beach-comp
Jan 1, 1986
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Mineral Phases and Element Associations of Ferromanganese Crusts, Amerasia Basin Arctic Ocean, Based on Sequential LeachingBy Natalia Konstantinova, Kira Mizell, James R. Hein, Georgy Cherkashov, Amy Gartman, Pavel Mikhailik
INTRODUCTION Ferromanganese (FeMn) crusts from Mendeleev Ridge, Chukchi Borderland, and Alpha Ridge, in the Amerasia Basin, Arctic Ocean, are similar based on morphology and chemical composition. The
Jan 1, 2018
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Halogens Geochemistry in Ferromanganese Crusts – Does The Electrochemical Model Apply?By Kira Mizell, James Hein
"INTRODUCTIONThe majority of studies on the genesis of ferromanganese crusts focus on the adsorption and accumulation of metals, and therefore cations, especially those of economic interest. From thes
Jan 1, 2017
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New Data From The Escanaba Trough: Implications For Other Sediment-Covered Ridge Axes And Besshi-Type Sulfides On LandBy Randolph A. Koski
Recent investigations located at least six major massive sulfide deposits (dimensions measured in tens to hundreds of meters) within a 50-km-long segment of Escanaba Trough, the sediment-covered axial
Jan 1, 1989