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Economic, Environmental and Technical Considerations for Deep-sea MiningBy Rahul Sharma
Although, mining of minerals such as polymetallic nodules and sulphides from the deep sea floor has been delayed due to the combination of factors such as current availability of Cu, Ni, Co, Mn (and o
Jan 1, 2010
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A Multidisciplinary Field Study of Cobalt-Rich Crusts, Tropic Seamount, North-East Atlantic: Marine E-TechBy Mark Lee, Isobel Yeo, Sarah Howarth, Christian Millo, Javier González Sanz, Paul Lusty, Bramley Murton, Pierre Josso
"Seafloor cobalt-rich ferromanganese crusts represent the most important yet least explored resource of ‘E-tech’ elements on the planet (Hein et al. 2003; ISA, 2008; Hein et al. 2010; Hein et al. 2013
Jan 1, 2017
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Japanese Deep Sea Impact Experiment (JET) And Its Preliminary ResultsBy Katsuya Tsurusaki
Commercial mining of manganese nodules is expected to begin within the next 20 to 50 years in large areas of abyssal sea floor in the Pacific Ocean. While deep sea mining is expected to realize signif
Jan 1, 1996
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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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The Application Of Modern Sea Floor Studies To A Precambrian Greenstone-Hosted Gold-Silver-Barite Deposit, BrazilBy N. J. Poll
The Zacarias gold-silver-barite deposit appears to be a Precambrian analogue of present-day exhalative deposits on the sea floor. Geochemical, stratigraphic and structural studies of the latter can be
Jan 1, 1993
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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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Production Determining Processes Of Subsea Deposit RemovalBy Tony van der Steen
Subsea mining system are designed for the following, principally different, tasks: Dreding - The destruction and removal of seabed sediments overlaying the bedrock. Cleaning - The competence
Jan 1, 1998
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Seafloor Occurrence And Growth Stages Of KODOS Ferromanganese NodulesThe seafloor occurrences of KODOS ferromanganese nodules can be classified into four facies based on the morphological types of nodules recovered and seafloor photographs. Facies A, B, and C are relat
Jan 1, 2005
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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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Hydrogenetic Growth of Ferromanganese Crusts: Which Processes Cause The Heteroepitaxial Intergrowth of the Fe- and Mn-Phases?By Peter E. Halbach, Andreas Jahn
Co-rich hydrogenetic ferromanganese crusts are typical marine interface products of growth processes taking place on sediment-free substrate rocks on the seafloor. They grow very slowly and preferenti
Jan 1, 2017
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Generic Mechanisms Affecting the Post-Formation Preservation of Seafloor Massive Sulphide Deposits: Preliminary Results from the TAG FieldBy Sven Petersen, Iain J. Stobbs, Bramley J. Murton, Paul A. J. Lusty
"INTRODUCTIONIt is widely thought that seafloor massive sulphide (SMS) deposits, the modern analogue of volcanogenic massive sulphide (VMS) deposits, present a potential global resource for base (Cu,
Jan 1, 2017
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Hydrogenetic Fe-Mn Crusts From The Atlantic And Pacific Oceans: Geological Evolution And Conditions Of Formation (87b4258a-f4bd-41f2-89e2-6fee198dbc10)By Irina A. Pulyaeva
Hydrogenetic Fe-Mn crusts are ubiquitous in the ocean basins and play an important role in marine mineral-deposit research because of their widespread occurrence and high concentrations of valuable an
Jan 1, 2011
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Finding Femn Crusts: Growth, Structure, Texture and Geophysical DetectionBy Mark Vardy, Kate Dobson, Isobel Yeo, Paul Lusty, Bramley Murton
In response to anthropogenic climate change, the way in which we use and generate energy is changing. To facilitate these developments, it is essential that we increase and diversify the supply of ‘E-
Jan 1, 2017
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The Mesoscale Distribution Of Zooplankton Community In The Northeastern PacificBy Jung-Hoon Kang
Present study was stemmed from the survey associated with deep-sea mining in the KODOS area between Clarion Fracture Zone and Clipperton Fracture Zone located in the North Pacific Ocean. The study
Jan 1, 2003
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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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Living With A New Law: The Impact Of P.L. 103-426 On Coastal Restoration And Public Construction ProjectsBy LeRon E. Bielak
Public Law 103-426 was signed into law in October 1994. Its provisions amended sections 8(k) and 20(a) of the Outer Continental Shelf Lands Act (OCSLA). The 8(k) amendment provides the Secretary of th
Jan 1, 1995
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Autonomous Robotic Sea-Floor Infrastructure for Bentho-Pelagic Monitoring (ARIM)By Olav Rune Godø
We present a science-based infrastructure for continuous online monitoring of the ocean interior including benthic, pelagic and the demersal habitats. It will reduce expensive ship based monitoring co
Jan 1, 2018
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A Review Of Radiometric Dating Methods Used Inassessing Submarine Volcanic Arc-Related MineraldepositsBy Robert G. Ditchburn
Msjflkcisokng During the past sixteen years, GNS Science has developed a number of radiometric methods for dating massive sulfide samples from submarine arc and back-arc volcanoes. This has improved o
Sep 14, 2011
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Summit Construction, Caldera Formation, Cone Growth, Mass Wasting, Hydrothermal Processes, and Sulfide Deposition on Submarine Volcanoes of the Southern Kermadec ArcBy Cornel E. J. de Ronde, Alexander Malahoff
Six active Kermadec arc submarine volcanoes, located between 34°S and 36°30'S were mapped and sampled between April and July 2005, using submersibles Pisces V and Pisces IV aboard the mothership
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Conceptual Methods Of Deep Sea Mineral Exploration In The Central Pacific - IntroductionBy David S. Cronan
The traditional method of deep sea manganese nodule exploration is to conduct grid survey and sampling on successively finer scales until a suitable deposit has been delineated. Clearly this is both
Jan 1, 2003