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Pacmanus: An Actively-Forming Submarine Polymetallic Sulfide Deposit In Felsic Volcanic Rocks Of The Manus Back-Arc, Papua, New GuineaBy Steven D. Scott
The 1991 PACMANUS Expedition (Papua New Guinea-Australia-Canada in the Manus Basin) discovered a very large (approximately 800 x 350 m) actively-forming seafloor polymetallic sulfide 4 deposit in fels
Jan 1, 2011
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Heavy Minerals, Offshore Virginia: A Project ReportBy C. H. Hobbs
A recently completed series of projects funded by the Commonwealth of Virginia and the U.S. Minerals Management Service was designed to assess the distribution of heavy minerals on the inner continent
Jan 1, 1988
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Towards a Formal Definition of Active and Inactive Seafloor Massive Sulfide DepositsBy J. W. Jamieson
INTRODUCTION Hydrothermal vents that form seafloor massive sulfide (SMS) deposits represent unique biodiversity hotspots that host many species that are found only at these sites. The destruction of t
Jan 1, 2018
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Stakeholders’ Perspectives on Deep Sea Mining: A Case Study in GermanyBy Tina Schneider
Scientists show that polymetallic nodules and massive sulfides from deep sea mining contain valuable metals. These metals have the potential to overcome future shortages of supply. Hence, companies, g
Jan 1, 2018
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Submarine Hydrothermal Mineral Deposits In The Eastern Mediterranean SeaBy David S. Cronan
Submarine hydrothermal mineralization occurs in at least three locations along the Hellenic Volcanic Arc in the Eastern Mediterranean Sea. Weak hydrothermal discharges occur off Kos and Nisseros at th
Jan 1, 1994
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Plate Tectonic Reorganizations: Possible Controls On Massive Sulfide DepositionBy A. M. Olivarez
The elucidation of the theory of plate tectonics has provided a conceptual framework for understanding the formation and distribution of different types of ore deposits. For example, we now recognize
Jan 1, 1988
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Comparative Analysis of Deep-Sea MineralsBy Pedro Madureira, Georgy Cherkashov, Harald Brekke, Marzia Rovere
"The most promising deep-sea mineral resources for exploration in the Area (beyond the limits of national jurisdiction) are polymetallic nodules, cobalt-rich ferromanganese crusts and polymetallic sul
Jan 1, 2017
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Underwater Hyperspectral Imaging of Marine Mineral DepositsBy Geir Johnsen
Hyperspectral remote sensing has been used extensively on land to identify minerals for the mining industries. An underwater hyperspectral imager (UHI) has been developed at the Norwegian University o
Jan 1, 2010
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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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Uranium Series Disequilibrium Dating Of Volcanic Massive Sulphide DepositsBy Robert Ditchburn
Within New Zealand?s extended EEZ there exists a vast submarine hydrothermal mineral resource associated with the Kermadec intra-oceanic arc. Along this arc more than thirty submarine volcanoes have b
Jan 1, 2005
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Gas Hydrate, Methanogenic Calcite, And 13C-Depleted Bivalve Shells From A Mud Volcano Offshore Los Angeles, CaliforniaBy James R. Hein
Methane and hydrogen sulfide vent from a cold seep above a shallowly buried methane hydrate in a mud volcano located 24 km offshore of Los Angeles, California in 800 m water. Bivalves, authigenic cal
Jan 1, 2005
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Neptune Minerals Plc - First Year as a Public CompanyBy Simon McDonald
The Neptune Group was established in 1999 to apply for exploration permits within New Zealand’s 200nm EEZ. These applications were to investigate and commercialise hydrothermal Seafloor Massive Sulp
Aug 24, 2006
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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 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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Computer Applications In Marine Mineral ExplorationBy Robert M. Owen
Recent advances in coring technology and in the development of shipboard and/or in situ geochemical geochemical analysis systems have greatly improved our ability to collect and analyze exploration sa
Jan 1, 1991
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Deep-Sea Mining Impacts above the Surface: Quantifying the fuel consumption and associated air pollution of a potential commercial deep-sea manganese nodule mining operation in the Clarion-Clipperton ZoneBy Andrea Koschinsky, Luise Heinrich
(for an oral presentation) Activities for preparing future deep-sea mining offer the unique opportunity to study environmental conditions and anticipate adverse environmental impacts prior to the comm
Jan 1, 2018
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Integrating GIS With Image Database And Its Role In The Development Of Marine MineralsBy Jun Lu
Compared with land mineral resources investigation, as well known, it is more important for marine geologists to get image data (e.g. photographs, video tapes and various charts) because they are ofte
Jan 1, 2000
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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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Spatial And Temporal Variability Of Physico-Chemical Parameter In The Northeast Equatorial Pacific OceanBy Seung-Kyu Son
This study was investigated about physico-chemical parameter such as water temperature, salinity, inorganic nutrients and total organic carbon (TOC). CTD (Model: Sea-Bird 911 Plus) castings were carri
Jan 1, 2005
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Methane Hydrate Exploration Around the Eastern Nankai TroughBy Masaru Nakamizu, Tetsuya Fujii, Tatsuo Saeki, Ken-ichi Yokoi
Methane hydrate, a solid compound formed from methane and water, occurs naturally in permafrost regions on-land and in deep continental slopes offshore and has been examined as future energy resource