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A Study on Processing of Seafloor Massive Sulphides from the Loki’s Castle Area at the Arctic Mid-Ocean RidgeBy Kurt Aasly, Przemyslaw B. Kowalczuk, Rolf Arne Kleiv
Seafloor massive sulphides (SMS) can serve as a potential resource of metals such as Cu, Zn, Au and Ag. SMS rock samples from the Loki’s Castle area at the Arctic Mid-Ocean Ridge are comprised of sulp
Jan 1, 2018
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Critical Elements in Hydrothermal Manganese Deposits from the Global OceanBy Samantha Whisman, James R. Hein
Hydrothermal marine manganese-oxide deposits (HMMD) are cemented and variously replaced volcaniclastic and biogenic sediments that were mineralized by distal, low- temperature, hydrothermal fluids. HM
Jan 1, 2018
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The Planning Viewpoint Of A Small Island NationBy Tap Pryor
A very small nation with large seabed resources requires a strategy. The simplest approach is to duplicate every step taken by the United Nations (UN), in its own leasing programme. In addition, the s
Jan 1, 1994
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Canada's Shelf Resource PotentialBy Peter B. Hale
Canada has a long history of marine-related industry and onshore mining. Even so, commercial interest in marine mining, excluding seawater mineral extraction and offshore extensions of hardrock deposi
Jan 1, 1985
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Base Metals In Modern Seafloor Magmas: Influence Of Tectonic Setting On Availability And Contribution To Sulfide DepositsBy Yannick Beaudoin
The source of base metals in modern seafloor hydrothermal systems can be attributed to leaching of host rocks by hydrothermal fluids and/or potentially by direct degassing of magma. From an economic p
Jan 1, 2005
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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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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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Mineralization Processes At Ocean RidgesBy Johnson R. Cann
Ocean floor sulfide deposits are now known from many parts of the world mid-ocean ridge system and from some seamounts. Clearly they can be expected to occur commonly on the ocean floor. However, only
Jan 1, 1988
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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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Iron And Manganese Oxide Deposits As Environmental Records: Examples In The NW Pacific Ocean And The Baltic SeaBy Akira Usui
Iron and manganese are very mobile metallic elements in the surface aqueous environment, particularly in the oceans. The elements are easily precipitated as oxides or dissolved back into water, contro
Jan 1, 2004
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Evaluating Benthic Community Disturbance And Succession Following Simulated Manganese-Nodule Mining In The Equatorial PacificBy Fred C. Dobbs
To effectively manage the potential environmental impacts of deep-sea mining of manganese nodules, we need to know substantially more about the effects of sediment redeposition on abyssal communities
Jan 1, 1992
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Trends In Deep Seabed Mining Technology: An Examination Of The International Patent RecordBy Anthony T. Jones
Deep seabed mining requires technology to collect materials and transport them to the surface. An international patent search was conducted to define the state of the art in seabed mining technology.
Jan 1, 2001
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Base And Precious Metal ?Ores? In The OceansBy Steven D. Scott
Stephen D. Scott Steven Scott is a Professor of Geology, Director of the Marine Geology Research Laboratory and, until May 1997, was Chairman for 9 years of Geological and Mining Engineering, all
Jan 1, 1998
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Characterization Of Sand Mining PlumesBy N. Wang
The City of Honolulu mines sand from nearshore deposits for beach maintenance. The suction dredging operation creates a discharge plume which is carried by currents and other motions until it settles
Jan 1, 1991
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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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Widespread Distribution and Long-term Continuous Precipitation of Hydrogenetic Ferromanganese Deposits in the NW Pacific OceanBy Robert G. Ditchburn, Albert Zondervan, Akira Usui, Hiroshi Shibasaki, Hajime Hishida, Ian J. Graham
Earlier reconnaissance geological survey and recent mineral exploration by the Geological Survey of Japan (now part of AIST), Metal Mining Agency of Japan (now part of JOGMEC) have revealed that hydr
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The Selection Of The Benthic Environmental Impact Testing Site In The Korea Contracted Area, Clarion-Clipperton ZoneBy Sang Bum Chi
In order to better predict and manage benthic disturbance by deep seabed manganese nodules mining, we needed to conduct a benthic disturbance experiment at the selected area, which has a similar envir
Jan 1, 2011
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Kuroko-Type Deposits From The Izu-Ogasawara (Bonin) Arc, JapanBy Kokichi Iizasa
Kuroko-type deposits exist in Japanese EEZ. Some of them are present in the Izu-Ogasawara oceanic island arc south of Tokyo. Major two Kuroko-type deposits occur in the area. One is the Sunrise hydr
Jan 1, 2002
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The Physical Properties of the Powdered Manganese Nodule and Bottom Sediment from C-C Zone, Northeastern PacificBy Hunsoo Choi, Sang-Mo Koh
Manganese nodule, the aggregate of fine grained manganese oxide minerals, is very brittle and fragile. In exploitation of manganese nodule, manganese nodules are easily broken into small pieces or p