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Summary Report Of The 2002 Survey Cruise For Cobalt-Rich Manganese Crust In The EEZ Of The Marshall IslandsBy Yoshitaka Hosoi
The survey of the cobalt-rich crust of the Republic of the Marshall Islands was carried out in 1996 and 1998, as the cooperative study project between Japan and SOPAC member countries, and at the thir
Jan 1, 2003
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Distribution of Manganese Deposits from Cretaceous to Recent -Overview of Studies of Buried Manganese Deposits in DSDP/ODP CoresBy Takashi Ito
Numerous studies have examined the distribution of deep-sea manganese deposits throughout geologic history. Here I summarize the recent results, focusing on the frequency of occurrence, burial age a
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Eastern English Channel Broadscale MappingBy Sally Philpot, Siân E. Boyd, Hubert L. Rees, Emma Bee, Carla Houghton, Ceri James, Silvana N. R. Birchenough, S. Limpenny David, A. Coggan1 Roger, Koen Vanstaen
Every year approximately 22 million tonnes of marine sand and gravel are dredged form British waters. The eastern English Channel (EEC) contains substantial reserves, a proportion of which have been
Sep 24, 2006
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Policy Considerations Related To Future Marine Minerals Developments Off Hawai'iBy John C. Wiltshire
Hawai'i is surrounded by a series of potentially valuable marine mineral deposits. These include manganese nodules between Hawai'i and Mexico, cobalt-rich manganese crusts and phosphorites i
Jan 1, 1996
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Manganese Nodules: Twenty Years Of AccomplishmentsBy John W. Padan
What is known about manganese nodules and their potential commercial recovery is outlined in terms of economics, legal rights, environmental impacts, and mineral genesis. As a result of 20 years of ac
Jan 1, 1989
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Waste Rejection on Seafloor by Slurry Flashing for Economic Seafloor Massive Sulfide MiningBy Yuta Yamamoto
Seafloor massive sulfides (SMS) which contain Au, Ag, Cu, Zn, and Pb have been interested in as a target of commercial mining these 15 years. Japan has large potential of SMS and a national R&D projec
Sep 14, 2011
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Preliminary Economic Evaluation of Deep-sea REE Mud MiningBy Tetsuo Yamazaki
Deep-sea rare-earth element-rich mud (REE Mud) distributes in pelagic clayey sediment column on ocean seafloor at 4,000-6,000 m deep. The thickness ranges 5-80 m and the burial depth 0-100 m. The REE
Sep 14, 2011
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Requirements and Implications of Nodule Mining on Deep-Sea Deposits and EnvironmentBy Sebastian Ernst Volkmann, Felix Lehnen
"INTRODUCTIONWhile today’s mine planning of land-based ore deposits follows methods, which are well established, mining standards for the deep-sea have not established. Having gained a basic understan
Jan 1, 2017
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Back to Basics: Contract Law and the ISA Exploitation RegimeBy Elizabeth McIsaac, Wylie Spicer
"In July 2016 the International Seabed Authority (the “ISA”) released a first working draft of its mineral exploitation regulations as well as the standard contract terms for mineral resources in the
Jan 1, 2017
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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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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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Minimizing Environmental Risk - An Opportunity To Reconsider Submarine Mine Tailings DisposalBy Paul C. Rusanowski
Mining is a waste intensive industry, oftentimes producing hundreds of kilograms of waste rock and tailings for every gram of metal recovered. Disposal of mine tailings is a major concern in most mini
Jan 1, 1991
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The Seabed Sampling Mobile ApparatusBy ?. V. Kabanov
n considered operation hydraulic and kinematic circuits of deep-water installation for sampling a ground from a sea-bottom are submitted. Control by setters is made remotely from a service station wit
Jan 1, 2005
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Contrasting Styles of Hydrothermal Activity at Brothers Volcano, Kermadec Arc, New ZealandThe Brothers hydrothermal system is host to two very contrasting vent fields and to date, is the only known example of this kind for any submarine arc volcano in the world. Firstly, there is the NW ca
Jan 1, 2010
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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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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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Deep Sea Minerals, Inc.By James M. Cairns
Deep Sea Minerals Inc. (DSM) is a high technology marine minerals and biotechnology corporation. The corporation is currently engaged in a worldwide leasing program to acquire exclusive rights in spec
Jan 1, 2000
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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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Prospecting For Submerged Treasures: Korean Deep Seabed Mining ExplorationBy Ki-Hyune Kim
The Korea Ocean Research and Development Institute conducted its first exploration for deepsea mineral resources in 1983, and began a systematic deepsea prospecting in 1989 among Micronesian islands a
Jan 1, 2011
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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