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Field Tests Of The Percussion-Waterlift And Vibracore/Vibralift Convertible Drill SystemsBy Walter L. O?Niell
The Continental Shelf Division of the Marine Minerals Technology Center has recently completed field tests of the percussion- waterlift drill and the vibracore/vibralift convertible drill. The two sys
Jan 1, 1991
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Influence Of Plate Movement And Oceanic Environment Change On Growth Of Ferromanganese Crust Formed In The Seamounts Of Western Pacific: Implication For Shrinkage Of Equatorial High Productivity Zone?By Jonguk Kim
Texture and geochemical composition of hydrogenous ferromanganese crust from relatively adjacent three seamounts (OSM2 at 157°35'E, 13°55'N, Lomilik at 161°37'E, 11°42'N and Lemkei
Jan 1, 2003
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Resource Management And Environmental Impacts In Sand And Gravel DredgingBy Ian Selby
Resource management is a key factor in the operation of a successful marine aggregates business; it is integral to the development of sustainability, satisfying increasing commercial, quality, and env
Jan 1, 2004
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Simple And Effective Sampling Methods For Marine Minerals ExplorationBy J. R. Woolsey
The cost of an offshore exploration project is mainly dependent on the size of the vessel engaged for the work and increases dramatically with increasing size. Of the various factors influencing vesse
Jan 1, 1986
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Deployment And Retrieve Of Deep Water MinerBy Chul H. Jo
The functions of miner mainly include the pick-up manganese nodules laying on the surface of the seafloor, the separation them from sediments, the crushing the nodules and the covey to the inlet of th
Jan 1, 2003
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A Remotely Operated System For Scientific Investigations Of Marine Mineral DepositsBy Fredrik Søreide
Several potential marine mineral deposits of various types have been identified within the Norwegian EEZ. The Norwegian University of Science and Technology has recently designed and built a new remot
Jan 1, 2004
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Strategic Environmental Assessment Of Marine Sand And Gravel ExtractionBy Terence Day
The traditional approach to mineral resource development is to identify the resource and then to undertake an environmental impact assessment of the effects of developing the resource. However, the tr
Jan 1, 1995
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Paleomagnetic Recorder in the West Pacific Ferromanganese CrustBy Chan Min Yoo, Jung-Keuk Kang, Wonnyon Kim
Recently high-resolution paleomagnetic age determination of ferromanganese crust in less than millimeter scale has been successfully carried out using a superconducting quantum interference device mic
Jan 1, 2017
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CBM Stimulation by Borehole Mining: 10 Years AfterBy Grigori Abramov
Borehole Mining (BHM) is a remotely operated underground and underwater method of extracting (mining) mineral resources by high-pressure water jets. It can be carried-out from the land surface, open p
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Rock Phosphate: Chatham Rise, New ZealandBy Chris Castle
The Chatham Rise is a submarine topographic feature lying off the east coast of New Zealand between the South Island and the Chatham Islands and within New Zealand?s jurisdiction. The Chatham Rise hos
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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New Opportunities For International Cooperation In Marine Mineral DevelopmentBy W. D. Siapno
Marine mineral resources have been reviewed in great detail on numerous occasions over the past few years. A summary of these efforts would indicate there is little new on the horizon as far as econom
Jan 1, 1988
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Multi-criteria Decision Making Application for Sustainable Deep Sea Mining Transport Plan SelectionBy Wenbin Ma, Cees van Rhee, Dingena Schott
Since the concept of deep sea mining (DSM) was proposed by J. L. Mero with his book, The Mineral Resources of the Sea, in the 1960s, many research and significant developments have been implemented. H
Jan 1, 2018
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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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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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The Broken Spur And TAG Hydrothermal Fields On The Mid-Atlantic Ridge: Complex Histories Of Mound DevelopmentBy R. W. Nesbitt
The TAG and Broken Spur hydrothermal mounds are located on the Mid Atlantic Ridge (MAR) at 260N and 290N (respectively). Both were initially discovered by exploratory work from surface vessels and bo
Jan 1, 1998
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Monitoring the Dynamics of Gas Hydrate Deposits and Hydrothermal Discharge using the NEPTUNE Undersea Observatory NetworkBy S. Kim Juniper
Ocean observatory technologies permit uninterrupted, real-time observation of dynamic seafloor environments such as gas hydrate deposits and hydrothermal vent fields that are of both scientific and ec
Sep 14, 2011
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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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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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Trace Elements In Massive Sulfides From The Semenov-2 Hydrothermal Field, 13º31´ N, Central Atlantic: ICP-MS And LA-ICP-MS DataBy Irina Melekestseva
The Cu-Zn massive sulfides from the basalt-hosted Semenov-2 hydrothermal field (13°31.13´ N, 44°59.03´ W, MAR) are enriched in Au (22?188 ppm) and Ag (127?1787 ppm) [Ivanov et al., 2008] and elevated
Sep 14, 2011