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On-Site Observations and In-Situ Experiments for the Ferromanganese Deposit at the Seamounts in the Northwestern Pacific: A Review for the ROV Geoscientific ExplorationBy Akira Usui
The small-scale observations, mapping, sampling, and in-situ experiments have been carried out since 2009 using JAMSTEC ROVs at some model seamounts in the Northwestern Pacific seamounts. Laboratory a
Jan 1, 2018
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Marine Diamond Mining - Now An Established IndustryBy Richard H. T. Garnett
On the western continental shelf of southern Africa diamonds derived from onshore sources are concentrated in gravels within drowned terrestrial and marine geomorphological features. First discovered
Jan 1, 1998
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DSM Concept Cube - A classification system for deep-sea mining conceptsBy Maria Thornhill, Rolf Arne Kleiv
INTRODUCTION The last decade has given rise to an increasing number of deep-sea mining concepts (DSMCs) outlining technical solutions for the production chain from seafloor mining to mineral or metal
Jan 1, 2018
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New Approaches To Mineral Exploration Off The Southwest Pacific Island NationsBy D. S. Cronan
Mineral exploration problems in the S.W. Pacific are not unique to that region, but a combination of favourable circumstances render it an ideal area to attempt to solve such problems. The land are
Jan 1, 1985
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Number 8 Wire Technology ? Keeping The Costs DownBy Keith Gordon
The recent discoveries of hydrothermal activity in the ocean off New Zealand have created interest in the business community in the commercial possibilities of mining associated marine polymetallic su
Jan 1, 2002
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Further Environmental Considerations For Marine Mining: Mine Closure And Environmental TerrorismBy Derek Ellis
There are two environmental issues which have only recently begun to need planning in detail for marine mining. One is the environmental consequences of mine closure; the other is environmental terror
Jan 1, 2005
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Draft Exploitation Regulations: Commercial ViabilityBy Eleanor Martin
An examination of the draft Exploitation Regulations from an investor’s perspective. We will look at the commercial requirements of the investment community (debt and equity) in order to provide fundi
Jan 1, 2018
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Exploration Strategies And Activities For Deep-Sea Mineral Resources Development Of KoreaBy Cheong-Kee Park
Since 1983, Korea Ocean Research and Development Institute (KORDI) have performed surveys on deep-sea mineral deposits in various areas with respects to their occurrences in Pacific ocean including ma
Jan 1, 2003
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Obtaining Approval For Deep Water Seafloor Mineral Extraction: The Solwara 1 ExampleBy David Gwyther
There is increasing recognition that in order for a development project to proceed successfully, it must first obtain a ?social licence to operate? from concerned stakeholders. Obtaining this ?licenc
Jan 1, 2011
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Particle Geochemistry at Hydrothermal Vents and Implications for Mining Seafloor Massive SulfidesBy Amy Gartman
"Seafloor hydrothermal systems result in the emission of abundant particles and nanoparticles into seawater1. Many of the elements in these particles settle locally, although some are transported dist
Jan 1, 2017
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The Newest Deep Submergence System In The United StatesBy Alexander Malahoff
The new ship-submersible system with R/V Ka'imikai-o-Kanaloa as a mothership and the PISCES V as the submersible completed its first season of dives. The dives involved deployment of the PISCES V
Jan 1, 1996
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Sediment Geochemistry Associated with Polymetallic Nodules in the Central Mexican PacificThe 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
Sep 14, 2011
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From Space Robotics to Deep-sea MiningBy Robert Corcoran, Piotr Jasiobedzki, Roy Jakola, Michael Jenkin
Vast mineral resources of copper, zinc, cobalt and gold have been identified off the coast of Papua New Guinea at depths exceeding 2,000 meters. Accessing them in a cost effective manner and without
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A New Concept Of Easy Pre-Site Survey Method Of Deep Sea Hydrothermal DepositsBy Shinichi Takagawa
The deep sea hydrothermal deposits are one of the most prospecting resources, and various works to develop these mines are now underway. There are also various methods for the pre-site survey of th
Jan 1, 2011
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The Initial Spreading of Turbidity Plumes – Dedicated Laboratory Experiments for Model ValidationBy Frans van Grunsven, Cees van Rhee, Geert Keetels
One of the obstacles during the initial phases of project development is the assessment of the environmental impact. Mining residue, consisting of fine seafloor sediments, are to be discharged subsea
Jan 1, 2018
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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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Overview of Cobalt-Rich Ferromanganese Crusts, Seamounts, and the Outlook for MiningBy Akira Usui, James R. Hein, Rachel Dunham
Ferromanganese crusts are found on most hard-rock substrates in the deep ocean (800-3,000 m). Their distributions on seamounts are complex and controlled by a wide-variety of factors including seamo
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Search for Sediment-hosted Seafloor Polymetallic Sulfides: What Are We Doing Wrong?By Timothy F. McConachy, Christopher J. Yeats, Ray Binns
Various kinds of sediment-hosted polymetallic sulfide deposit are known on land in ancient marine sequences, many tending to be larger and more valuable than massive sulfide deposits genetically ass
Aug 24, 2006
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Mineralisation Associated with Submarine Volcanoes of the Southern Kermadec Arc, New ZealandBy Ian J. Graham, Cornel E. J. de Ronde
New Zealand lies astride a convergent plate boundary that extends north-eastwards from the Taupo Volcanic Zone (TVZ) to Tonga. This boundary is marked by the Kermadec arc, c. 1200 km of which falls wi
Aug 24, 2006
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Phase Composition of Gold from Massive Sulfides of the Semenov-2 Hydrothermal Field (13º31.13´N), Mid-Atlantic Ridge ? IntroductionBy I. Yu. Melekestseva
The Semenov hydrothermal sulfide cluster (13º31´N), consisted of five fields (Semenov-1, -2, -3, -4, and -5), was discovered in 2007 in the 30th cruise of R/V Professor Logatchev [Beltenev et al., 200
Jan 1, 2010