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Assessment Of The Rehabilitation Of The Seabed Following Marine Aggregate DredgingBy S. E. Boyd
Studies of benthic recolonization following the cessation of dredging in U.K. waters and elsewhere are limited, and are largely confined to experimental circumstances. Investigations of the physical
Jan 1, 2004
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Marine Minerals Research In The United States --- Recent Results From The Marine Mining Technology CenterBy Sukumar Bandopadhyay
The Marine Mining Technology Center (MMTC) was authorized by an act of the United States Congress in 1996. The act established several marine minerals research centers in the U.S., including one at t
Jan 1, 2004
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The Development And Operation Of Remotely Operated Powered Seabed Coring Systems For Geology, Geotechnics And Mineral Exploration In Coastal To Ocean DepthsBy Alister C. Skinner
The Marine Operations and Engineering section of the British Geological Survey based in Edinburgh, Scotland have, over the last 30 years, developed and operate a series of remotely operated, and power
Jan 1, 2004
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Near Sea-Bottom Gas Hydrate Accumulations Related To Fluid Discharges As Objects Of Inquiry And Possible UtilizationBy V. Soloviev
The world?s data available on near sea-bottom gas-hydrate accumulation and deep-water fluid-discharge areas are presented in this paper. Gas-hydrate accumulation associated with fluid discharge (mud
Jan 1, 2005
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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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Gold Recovery Investigations With Radiotracers (198Au) And Relevance To Placer OperationsBy Daniel E. Walsh
The recovery of most minerals, which are amenable to gravity concentration, is standardly determined by accurate sampling and assaying. .With respect to particulate - gold ores, sampling and assaying
Jan 1, 1989
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Epithermal Ore Formation At The Neovolcanic Komba Ridge In The Eastern Flores Sea, IndonesiaBy Peter Halbach
Within the frame of the German-Indonesian cooperative Bandamin research project two short cruises (7 station days each) were carried out which led to the Flores-Banda basin located north of the active
Jan 1, 2004
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Alaska's Marine Minerals: A Case For Assessment And EvaluationBy James C. Barker
Alaska's expansive continental shelf represents future opportunities for marine mineral development. Although today's metal prices and subsidized foreign mineral production continue to disco
Jan 1, 1991
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Genesis Of The Diamond Mega-Placers Of Southern Africa And Its Global ContextBy B. J. Bluck
Diamond mega-placers, in order to rank amongst the primary diamond deposits, are defined as => 70 m carats at =>95% gem quality. There is only one mega-placer known and that is found along the coast o
Jan 1, 2004
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Gas Hydrates Of The West Coast Of India ? A Neo-Tectonic PerspectiveBy S. Rajendran
Gas Hydrates (Methane Hydrates) are solid, ice-like substances composed of water and natural gas. They occur naturally in areas of the world where methane and water combine at appropriate conditions o
Jan 1, 2005
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Exploration Strategies And Activities For Deep-Sea Mineral Resources Development Of KoreaBy Cheong-Kee Park
Since 1983, Korea Ocean Research and Development Institute (KORDI) have performed surveys on deep-sea mineral deposits in various areas with respects to their occurrences in Pacific ocean including ma
Jan 1, 2003
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The Inquiry Into The Influence Of The Underwater Scattering Layer On Seabeam And The Tentative Idea Of The Application Of The Acoustic Properties Of Manganese NodulesBy Cheng Xiangzhou
The China Ocean Mineral Resources Research and Development Association (COMRA) conducted a topographic survey in its deep seabed claim area with the SeaBeam system in 19475. After analyzing the data,
Jan 1, 1996
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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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The Approach To Environmental Impact Assessment For Mining Seafloor Massive Sulfides In Japan ?DNA Analysis For Biodiversity Conservation By The Genetic Connectivity ConceptsBy Teruyoshi Narita
In Japan, the Ministry of Economy, Trade and Industry (METI) commenced a research and development (R&D) project on seafloor massive sulphides (SMS) in Japan?s exclusive economic zone (EEZ) in the 2008
Sep 14, 2011
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Fine-Scale Dating And Chemical Variations Of Deep-Sea Ferromanganese Crusts In The Western And Central PacificBy Akira Usui
Fine-scale geochemical, mineralogical, and structural variations in ferromanganese crusts are believed to be the long-range records of paleoceanographic conditions and geological events on the small t
Jan 1, 2002
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Marine Aggregates In North West Europe ? Demand And SupplyBy Graham Singleton
Around 235 million tonnes of marine aggregates have been dredged in the last decade from the UK continental shelf alone. The current distribution of marine aggregate production licence areas in No
Jan 1, 2004
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Deep-sea mining feasibility: The Norwegian caseBy Steinar L. Ellefmo, Maxime Lesage
"There are many reasons invoked when discussing the relevance of deep-sea mining minerals. The shift towards more focus on renewable energy (“the green shift”) will not be possible without more materi
Jan 1, 2017
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Lessons From Marine Diamond MiningBy Richard H. T. Garnett
Large scale, profitable, offshore mining of cassiterite started in 1907 around the coast of south Thailand and continues today in Indonesia. The more complex marine mining of diamonds commenced in the
Jan 1, 2004
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Market Analysis for Deep-Sea Mining EquipmentBy Felix Lehnen, Peter Kukla, Mirjam Rahn
"Significant uncertainty is associated with predicting future trends in deep-sea mining projects, especially when attempting to assess markets for associated products such as ships and collectors. In
Jan 1, 2017
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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