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IHC Merwede And DEME Join Forces To Develop Deep-Sea Mining ActivitiesBy Kris van Nijen
IHC Merwede, a Dutch supplier of ships and equipment for dredging and mining activities, and DEME, a Belgian dredging and environmental services group, will enter into a joint venture for deep-sea min
Jan 1, 2011
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Regional-Scale Mapping Of U.S. Continental Margin Sedimentary Environments: Tools For Research, Seafloor Management And Aggregate Resource AssessmentsBy S. Jeffress Williams
Continental shelf margins are dynamic sedimentary environments that contain important benthic habitats and support many functions such as navigation, national defense, cables, pipelines, trawling, and
Jan 1, 2004
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Nearshore Geochemical Exploration TechniquesBy John Noakes
Marine scientists at the University of Georgia, have in the past few years, designed, developed and refined two geochemical survelliance systems for the exploration of hard mineral resources on the se
Jan 1, 2011
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A Classification Society´s Experience with Subsea MiningBy Marco Figoni
The increased interest on deep water minerals resources is a challenge for both mining and oil industry. The exploration and production of oceans minerals require a synergy between of different techno
Sep 14, 2011
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Potential Offshore Aggregate, Gulf Of MexicoBy S. Jeffress Williams
The topic area for this paper covers the United States portion of the northern Gulf of Mexico, extending from the Rio Grande delta east to the Florida peninsula. Declaration of an Exclusive Economic Z
Jan 1, 1986
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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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Paleochemical Clues To Ancient Metalliferous Sediment Deposits: The Chinook Trough Hydrothermal SequenceBy Gerald R. Dickens
Massive sulfide ores and Fe-Mn oxyhydroxide precipitates represent two extremes of a spatial continuum of hydrothermal deposition along oceanic ridges. Elemental variations across this continuum are o
Jan 1, 1994
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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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Rovdrill® - The Development and Application of a New ROV Operated Seabed Drilling and Coring SystemBy Allan Spencer
In March 2007, Nautilus Minerals Inc. announced that they had commenced their 2007 exploration and development program with the mobilization of the Research Vessel Wave Mercury and the Survey Vessel A
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Deep-sea mining feasibility: The Norwegian caseBy Steinar L. Ellefmo, Maxime Lesage
"There are many reasons invoked when discussing the relevance of deep-sea mining minerals. The shift towards more focus on renewable energy (“the green shift”) will not be possible without more materi
Jan 1, 2017
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Sea-Bed Mining Off Africa?s Diamond Coast Diamondfields? Luderitz ProjectBy Dan Johnson
The discovery of rich alluvial diamond deposits on Namibia?s Skeleton Coast in 1908 began a period of intense exploration and mining off the coastal sand; and shallow surf zones. In the mid-60s a Tex
Jan 1, 1998
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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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The Japan/Sopac Co-Operative Deep-Sea Mineral Resources Study Project: Report On Results Of Activities Between 2000 To 2002, With An Emphasis On Results Of Marine Drilling In The North Fiji Basin, Fiji?s EEZBy Nobuyuki Okamoto
The present three-year long phase of the SOPAC/Japan Deep Sea Co-operative Mineral Resources Programme [Programme], commenced in 2000. The Programme has been funded by the Government of Japan through
Jan 1, 2002
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Hydrothermal Mineralization At Slow-Spreading Centers: The Atlantic Model (6baa95a4-914b-4150-8eae-8e16998a1da4)By Peter A. Rona
Hydrothermal mineralization along slow-spreading oceanic ridges and rift -zones that comprise more than half the global length of the seafloor spreading center system is related to anomalous physical
Jan 1, 1985
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A System Approach to Survey, Exploration and Environmental AssessmentBy Richard Mills
Autonomous Underwater Vehicles (AUVs) are proven technologies used across market segments for survey, exploration and environmental monitoring tasks. When coupled with other autonomous platforms or se
Jan 1, 2018
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Characteristics of Hydrothermally Altered Wall Rocks from Modern Hydrothermal FieldsBy C. W. Devey, K. S. Lackschewitz
The mineralogy and geochemistry of hydrothermally altered wall rocks from different modern basaltic- and felsic-hosted hydrothermal fields at seafloor spreading centers and convergent margins have bee
Aug 24, 2006
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Manganese Nodule Collector & Integrated Mining Operation Technology - Fields Of Manganese NodulesBy Wilhelm Schwarz
Manganese nodules lay in vast areas of the deep sea floor. Ideal harvesting conditions for a manganese nodule field are dense nodule abundances of nodules between 20 and 60 mm diameter and a metal con
Jan 1, 2003
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The Dacite-Hosted Pacmanus Hydrothermal Field, Eastern Manus Basin: Analog For Ancient Volcanogenic Massive Sulfide Ore EnvironmentsMassive sulfides discovered in 1991 and further explored in 1993 in the eastern Manus back-arc basin, north of Papua New Guinea, represent one of the few modem seafloor occurrences known to he associa
Jan 1, 1993
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How to Increase Economy of Seafloor Massive Sulfide MiningBy Tetsuo Yamazaki
Seafloor massive sulfides have been a subject of interest for profitable commercial mining these ten years. Because of the higher Au, Ag, and Cu contents, they have received much attention as immedia
Jan 1, 2010
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An Economic Assessment Of The Long-Term Future Of Mining Deep-Sea FerromanganeseBy Andrew G. Hudson
The long-term economics of each of the four principal metals in marine manganese nodules (copper, nickel, cobalt and manganese) was evaluated to determine the anticipated viability of a nodule mining
Jan 1, 1996