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Commercial And Technical Realities Of Deep Ocean Mining
By Jon Machin
?ORE? is defined as ?mineral/s that can be mined at a profit?. So, what is ORE at 2,000 m water depth? Is it 5% Copper or 1.8% Nickel/Cobalt? One of the key factors that determine what is ORE, pr
Jan 1, 2004
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MARTEMIS – An Electromagnetic Coil System for the Detection of Buried Seafloor Massive Sulfides
By S. Hölz, M. Jegen, K. Reeck, A. Haroon
Past investigations of seafloor massive sulfides (SMS) focused on actively forming sites. New technologies are needed to explore for SMS deposits which have finished their active phase and are possibl
Jan 1, 2018
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Green Minerals from the Seabed
By David Huber, John Halkyard
Deep Reach Technology, Inc. recently completed a multi-year cooperative research project for the U S Army Research Laboratory for the purposes of investigating recovery of rare earth elements from the
Jan 1, 2017
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Dynamic Mineral Recrystallization – Implications for Sustainable Trace Metal Recovery from Deep-Sea Ferromanganese Deposits
By Tobias Hens, Andrew Frierdich, Barbara Etschmann, Joël Brugger, Barrie Bolton
"Ferromanganese (Fe-Mn) nodules and crusts are prime targets for future deep-sea mining ventures due to their unusual enrichment of critical metals, such as Ni, Co, Cu, Ti, Te, Zr, Hf, Nb, Y, and REE.
Jan 1, 2017
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Evolution of Geotechnical Properties in Hydrothermal Sulfide Mounds, The Reveal of a Maturation Threshold - Introduction
By Benoît Waquet
In a context of scarce mineral resources, coupled with an increasing global demand in metals due to the exponential growth of newly industrialized countries, the mining industry will inevitably have t
Jan 1, 2010
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EEZ Road Maps For The Future
By Dallas L. Peck
The U.S. Geological Survey (USGS) recently completed phase 1 of a mapping effort that makes the United States the first nation to systematically acquire image maps of its underwater lands. In 1984, th
Jan 1, 1992
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Borehole Mining Technology For Underwater Application
By M. F. Dibble
The technology available for mining of underwater mineral resources such as placers and phosphorite, typically occurring with variable amounts of overburden, has remained largely unchanged for decades
Jan 1, 1986
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Screening Criteria For Submarine Tailings Disposal
By Derek V. Ellis
A stepwise implementation of seven criteria for screening the physical, chemical and environmental suitability of submarine tailing disposal (STD) at coastal mines is presented. It is expected that si
Jan 1, 1994
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Use of Autonomous Technology for Mapping Seabed Minerals
By Lars-Kristian Trellevik, Jan Arvid Ingulfsen
Swire Seabed is dedicated to being at the forefront of the Autonomous Subsea Revolution. The company is currently working along and developing operational, technical and market strategies where autono
Jan 1, 2018
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Pelagic Sediments Associated With Polymetallic Nodules In The Clarion Area Fracture Zone
By Marlene Olivares Cruz
The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th
Jan 1, 2011
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Acoustic Techniques For Marine Geological Studies
By Russell Parrott
Acoustic techniques offer a rapid, economical, non-intrusive method of obtaining information about the stratigraphy and properties of seafloor sediments. During the past decade there has been a dramat
Jan 1, 1985
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A Comparison Of The Results Of Three Systems For Setting Sediment Quality Guidelines For Trace Metals
By Derek V. Ellis
Sediment Quality Guidelines can provide target values that should not be exceeded when seabed deposits are disturbed for mining, waste discharge or other purposes. Three sets of Guidelines have appear
Jan 1, 1995
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Managing Deep Sea Tailings Placement And The Environment: An Analogue For Deep Sea Mining
By Tracy Shimmield
Deep sea tailings placement (DSTP) techniques have been pioneered in Papua New Guinea (PNG): a mining reliant economy in a seismically active region, facing major environmental challenges in the safe
Sep 14, 2011
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Electric Motor Drive Systems for Mobile Mining Equipment for Deep-Sea Mining to Maximize the Productivity
By Roy Nilsen, Aravinda Perera
With the exponential growth of demand for minerals and need for diversification of supply channels, deep-sea mining is rapidly becoming inevitable. Productivity of underwater mining technology is sali
Jan 1, 2018
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Sampling System Development For Seabed Crust Deposits
By David A. Larson
The future exploitation of crust deposits will require a dependable characterization system. The U.S. Department of the Interior, Bureau of Mines (Bureau) initiated research to develop a new sampling
Jan 1, 1991
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Extremophile Exploration: Geothermal And Hydrothermal Systems
By Alexander Malahoff
The study of why and how life survives in the Extreme environment is a major frontier of science today. Extremophiles are organisms that require extreme environment including high temperature, pH, pr
Jan 1, 2001
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Draft Exploitation Regulations: Commercial Viability
By Eleanor Martin
An examination of the draft Exploitation Regulations from an investor’s perspective. We will look at the commercial requirements of the investment community (debt and equity) in order to provide fundi
Jan 1, 2018
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Design Considerations for Deep Sea Mining Umbilicals
By Sander van Leeuwen
Outline: · De Regt Marine Cables. · The link between system requirements and umbilical requirements (which system requirements have the largest impact on the umbilical design). · Design options for de
Jan 1, 2018
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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 Information
An 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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The New Exclusive Economic Zone Gas And Mineral Deposits A Target For New Exploration
By Alexander Malahoff
With its new continental shelf beyond the exclusive economic zone, New Zealand is a country with just 4% of its territory above water. The other 96% is submerged. New Zealand's marine territory c
Jan 1, 2011