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Arctic Ocean Fe-Mn Crusts and Nodules: A Genetic Model and Final AnalysesBy Natalia Konstantinova, Kira Mizell, James R. Hein, Georgy Cherkashov, Amy Gartman, Mariah Mikesell
"Two types of metallic deposits have been found in the deep Arctic Ocean: Hydrothermal Fe, Cu, and Zn sulfide deposits form along Gakkel Ridge in the Eurasia Basin and associated ridges between Greenl
Jan 1, 2017
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Compositional Variation And Genesis Of Ferromanganese Crusts Of The Afanasiy-Nikitin Seamounts, Equatorial Indian OceanBy V. K. Banakar
The occurrence of hydrogenous ferromanganese encrustations (Fe-Mn crusts) on the Cretaceous age Afanasiy-Nikitin Seamounts (ANS) in the eastern Equatorial Indian Ocean (EEIO) was first reported by Ban
Jan 1, 2005
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Chemical And Geological Study Of Mexican North Pacific Littoral SedimentsBy Leticia Rosales Hoz
A chemical and geological study of beach samples from the Mexican North Pacific was undertaken in order to evaluate the chemical composition of the beach sediments and it s association to lithology, c
Jan 1, 2000
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Finding And Proving Seafloor Massive Sulphide ResourcesBy Julian Malnic
Various natural, commercial, engineering and operational factors govern the evolution of approaches taken in the exploration for Seafloor Massive Sulphides (SMS) and in delineating the resource. Thes
Jan 1, 2001
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Occurrences Of Ferromanganese Crusts In The Lemkein Seamount Of RMI: Preliminary ResultsBy Jai-Woon Moon
Lemkein seamount located in the west of the Kuwajleen Atoll of RMI is a relatively samll, simple-shaped, peaked type seamount with its base at 4,500 m and summit at 1,452 m water depths. Ferromanga
Jan 1, 2000
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Some Questions of the AUV Control in Surveying the Seamounts.By Mikhail D. Ageev
The paper concerns with some questions of Autonomous Underwater Vehicle (AUV) control system design, which allows a motion at rough undersea terrain. The AUV advantages reveal itself completely du
Jan 1, 2011
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Likely Directions In Deep Ocean Mining To 2010By David Heydon
The big money is backing both manganese nodules and manganese crusts as the most likely deep ocean mining development by 2010, but seafloor massive sulphides of copper/gold/zinc offer an alternative b
Jan 1, 2004
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Conceptual Methods Of Deep Sea Mineral Exploration In The Central Pacific - IntroductionBy David S. Cronan
The traditional method of deep sea manganese nodule exploration is to conduct grid survey and sampling on successively finer scales until a suitable deposit has been delineated. Clearly this is both
Jan 1, 2003
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The Campbell Ferromanganese Nodule Field (SW Pacific Ocean) Formed Beneath The Deep Western Boundary Current: An Important Source Of Paleo-Environmental And Chronostratigraphic InformationAn extensive ferromanganese nodule field south of New Zealand (Fig. 1) has existed beneath the flow of the Deep Western Boundary Current (DWBC) and Antarctic Circumpolar Current (ACC) for at least the
Jan 1, 2003
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230Th/U-dating of Massive Sulfides: Results and ApplicationsBy Georgy Cherkashov, Vladislav Kuznetsov
The presentation describes new data concerning the age of the Mid-Atlantic Ridge (MAR) hydrothermal fields. The collection of massive sulfides recovered from six hydrothermal fields has been dated usi
Aug 24, 2006
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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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Not Your Father's AUV: New Technologies That Will Transform Deep Sea OperationsBy Carl L. Kaiser
This abstract discusses selected recent technology developments at the Deep Submergence Lab at the Woods Hole Oceanographic Institution aimed at fundamentally changing the nature and scope of AUV oper
Sep 14, 2011
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Boundaries Of Impact Of Marine Aggregate Mining In Shelf WatersBy Richard C. Newell
The United Kingdom marine aggregate mining industry is the second largest of its kind after Japan. Materials for the construction industry, sea defences and for many other purposes are exploited from
Jan 1, 2000
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Black Sands In The Pacific Mexican LittoralBy Arturo Carranza Edwards
One hundred ninety nine beach face sand samples from an equal number of beaches from the Mexican Pacific were studied. Based on petrological and chemical analysis some locations have been studied in m
Jan 1, 1994
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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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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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Hydrogenetic Growth of Ferromanganese Crusts: Which Processes Cause The Heteroepitaxial Intergrowth of the Fe- and Mn-Phases?By Peter E. Halbach, Andreas Jahn
Co-rich hydrogenetic ferromanganese crusts are typical marine interface products of growth processes taking place on sediment-free substrate rocks on the seafloor. They grow very slowly and preferenti
Jan 1, 2017
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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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Hawaiian Mineral Deposits And Extremophiles On Loihi Submarine Volcano: A New ResourceBy Alexander Malahoff
The most exciting frontier in Ocean Technology is represented by a new class of Marine Bioproducts, the source of which lies in marine microorganisms. The microorganisms include microalgae, bacteria
Jan 1, 2000
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The Aggregate Potential Of The Scotian Shelf, CanadaBy Gordon B. J. Fader
A regional assessment of the aggregate potential of the Scotian Shelf is presently being funded through a Canada-Nova Scotia Cooperation Agreement on Mineral Development. This assessment includes test
Jan 1, 1995