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Magmatic Fluids In Seafloor Volcanic Rocks: An Enriched Metal Source For 'Giant' Ore Deposits?By Kaihui Yang
Volcanogenic massive sulfide deposits are generally considered to have been formed by hydrothermal fluids that leach ore metals out of footwall rocks. However, the necessity for a metal-rich magmatic
Jan 1, 2011
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Road Map To Successful Commercial Deep Ocean MiningBy John Halkyard
Deep ocean mining is experiencing a rebirth following many years of low levels of activity. Large scale mining is being projected as just over the horizon. A lot has been made of the advances in deep
Jan 1, 2011
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Reconsideration of Fine-scale Dating of Ferromanganese Crusts for More Reliable Microstratigraphic CorrelationBy H. Oda, L. E. Fong, K. K. McBride, B. P. Weiss, F. J. Baudenbacher, A. Usui
Fine-scale dating is a key parameter in characterizing the growth history of hydrogenetic ferromanganese crusts. We once compared several dating methods, micropaleontological (calcareous nanofossil),
Aug 24, 2006
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The Role of Bimodal Magmatism and its Products in Volcanogenic Massive Sulfide Ore-Forming Systems: A Case Study from the Middle Okinawa Trough, JapanBy Toru Yamasaki
"Bimodal lithostratigrafic assemblages are of significance in volcanogenic massive sulfide (VMS)-hosted lithology. The largest deposits are either bimodal-siliciclastic or maficsiliciclastic, and the
Jan 1, 2017
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Hydrothermal Fluxes along the Mohns Ridge - Implications for Mineral Resources at Ultraslow Spreading Ridges (e048573c-fd0f-47f0-8fbd-b9f2b4c42dfb)By T. Barryere, R. B. Pedersen, E. Reeves, A. Stensland, I. Thorseth, T. Baumberger
Venting on ultraslow spreading ridges is far more abundant then previously predicted, and the discrepancy between observed and predicted vent field density may imply that non-magmatic heat sources are
Jan 1, 2018
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Hydrothermal Fluxes along the Mohns Ridge - Implications for Mineral Resources at Ultraslow Spreading RidgesBy RB. Pedersen, T. Barryere, E. Reeves, A. Stensland, I. Thorseth, T. Baumberger
Venting on ultraslow spreading ridges is far more abundant then previously predicted, and the discrepancy between observed and predicted vent field density may imply that non-magmatic heat sources are
Jan 1, 2018
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On The Deep Water Turbine-Electric Energy Systems For Industrial UseBy Igor E. Mikhaltsev
This paper concerns the continuation of work on the deepwater non-oxygen cycle heat energy generating systems. The 25-kW prototype of a universal deepwater turbine-electric energy source with hydrazi
Jan 1, 2001
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Mineral Processing Of Seafloor Hydrothermal Deposit Samples -Treatment Using Gravity Separation And Flotation Methods - IntroductionBy Mayumi Ito
Seafloor hydrothermal deposits are found worldwide at 700 to 3,600 meters below sea level [1] and contain base and precious metals like Cu, Pb, Zn, Au, and Ag. Some deposits were found in the Japanese
Jan 1, 2011
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Tectono-Magmatic Controls for Seafloor Massive Sulfide Deposit (SMS) Formation in a Back-Arc Setting; a Clue to ExplorationBy Toru Yamasaki
A concept of plate-tectonic controls for the formation of seafloor massive sulfide (SMS) deposits in back-arc settings was established by Franklin et al. (2005). According to Franklin et al. (2005), a
Jan 1, 2018
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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
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Vertical Hydraulic Transport For Deep Sea Mining Applications - IntroductionBy Paul M. Vercruijsse
Deep sea mining operations by nature are performed (or planned) in challenging environments. Another typifying characteristic of deep sea mining operations is the relatively high investment cost. This
Jan 1, 2011
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Hydrothermal Processes And Sulphide Depositions On Submarine Volcanoes Of The Southern Kermadec ArcBy Alexander Malahoff
Six active Kermadec Arc submarine volcanoes located between 34°S and 36°30?S were mapped and sampled by an interdisciplinary inter-institutional research team between April and July 2005 using submers
Jan 1, 2005
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Brothers Volcano, Southern Kermadec Arc, New Zealand: Contrasting Vent Sites And Evidence For A Magmatic Fluid ComponentBy Cornel E. J. de Ronde
Brothers volcano (34°51.7?S, 179°03.6?E) is a large caldera volcano that forms part of the active Kermadec arc south of 32° S, NE of New Zealand. It is an elongate edifice striking NW-SE that is ~11-
Jan 1, 2004
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Can Recycling and the Circular Economy Render Seafloor Mining Unnecessary?By Fernando J. A. S. Barriga
"Recent concerns over the availability of many mineral raw materials, and newly available technological developments, produced renewed interest in deep-sea mining. However, environmental concerns, wit
Jan 1, 2017
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Gold Mineralization In The Marine Environment; A Possible Marine Mineral Exploration And Mining TargetBy Thomas Pichler
In the past marine mining technology has focused on bulk mining of base metals from polymetallic massive sulfides. This has not been very successful because of the relatively low unit value of these m
Jan 1, 1993
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Local Variability of Ore Bed Parameters in Co-Rich Manganese Crusts (e23c7a2a-21be-4683-96e7-b361ec68f39c)By M. Ye. Melnikov
The report is about oceanic ferromanganese crusts ? covers of iron and manganese hydroxides developed over an opened rock of seamounts and rises. Ore bed parameters of crusts are understandable as the
Jan 1, 2010
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Local Variability of Ore Bed Parameters in Co-Rich Manganese CrustsBy M. Ye. Melnikov
The report is about oceanic ferromanganese crusts ? covers of iron and manganese hydroxides developed over an opened rock of seamounts and rises. Ore bed parameters of crusts are understandable as the
Jan 1, 2010
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Pilot Mining Robot for Polymetallic Nodules and Pre-Pilot Mining TestsBy Sup Hong
A pilot mining robot, named MineRo-II, has been developed by KIOST during 2011-2012. The pilot scale was defined as 1/5 of the commercial mining capacity, 1.5 million dry-tons of nodules per year. The
Sep 14, 2011
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Fundamental Study Of UV-Fluorescence Sensing System For Seafloor Massive Sulfides ? IntroductionBy Tetsuo Yamazaki
Seafloor massive sulfides (SMS) in the western Pacific have received much attention as resources for gold, silver, copper, zinc, and lead (Lenoble, 2000). Since the end of the 1980s, SMS have been fou
Jan 1, 2011
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Some Results Of The First Commercial Use Of Geophysics To Explore For Seafloor Massive Sulphide (SMS) Deposits: The Suzette Hydrothermal Vent Field, Eastern Manus Basin, PNGBy Justin C. I. Baulch
In October 2004 Placer Dome entered into an exploration farm-in agreement with Nautilus Minerals, to explore for Submarine Massive Sulphide (SMS) deposits on Nautilus? PNG exploration tenements. Plac
Jan 1, 2005