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Finding Femn Crusts: Growth, Structure, Texture and Geophysical DetectionBy Mark Vardy, Kate Dobson, Isobel Yeo, Paul Lusty, Bramley Murton
In response to anthropogenic climate change, the way in which we use and generate energy is changing. To facilitate these developments, it is essential that we increase and diversify the supply of ‘E-
Jan 1, 2017
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Further Environmental Considerations For Marine Mining: Mine Closure And Environmental TerrorismBy Derek Ellis
There are two environmental issues which have only recently begun to need planning in detail for marine mining. One is the environmental consequences of mine closure; the other is environmental terror
Jan 1, 2005
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First Map and Catalogue of Submarine Mineral Deposits from Spain: Emodnet-Geology ProjectBy Lorena Blanco, Guillermo Gómez-Ramos, Iker Blasco, Egidio Marino, Luis Somoza, Ricardo León, Teresa Medialdea, Javier González
"This study presents the first catalogue of marine mineral deposits and energy resources along the continental margin of Spain. Aggregates, oil and gas and metalliferous mineral areas have been define
Jan 1, 2017
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K-07 – Results of Neptune Minerals 2007 Southern Kermadec Arc Exploration ProgramBy Justin C. I. Baulch, Robina Sharpe, Steven J. Downey, John P. Feenan, Kate M. Perrin
Since becoming a public company in October 2005, Neptune Minerals has continued to advance its primary aims. Major achievements in the last year have been: • Successful completion of two simultaneou
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Deep Seabed Resource PotentialBy G. A. Gross
Technological development in the last two decades has provided access to the deep seabed and opened a new frontier for exploration. Interest in Canada has focused mainly on study of metallic mineral o
Jan 1, 1985
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Nodules: Nineties & BeyondBy William Siapno
Manganese nodules, as metal ores, have for the most part been cast aside from further consideration within this century. However, in the decade of the 90s, rising demand at all levels of society, for
Jan 1, 1991
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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
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Acoustic and Inertial Positioning Solutions for Underwater Mining ApplicationsBy Pierre-Yves Morvan
One of the numerous challenge for underwater mining is the positioning. This paper describes an architecture for the integration of an Ultra Short BaseLine (USBL), an Acoustic Synthetic BaseLine (ASBL
Jan 1, 2017
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New Frontier Explored by D/V ChikyuBy Wonn Soh
As for Earth, where human beings live, approximately 70 % of its surface is covered by oceans. Today, advanced technology has led us to understanding the abyssal ocean floor through the use of subme
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Detection and Quantification of Seafloor Ilmenite Deposits Utilizing Induced PolarizationBy Curtis Clement
Williamson & Associates, Inc. has developed a marine mineral exploration tool using an induced polarization technology (IP) under license from the US Geological Survey. Developed by Jeff Wynn at the
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Distal Metalliferous Sediments and Search of Underwater Hydrothermal DepositsBy Evgeny G. Gurvich
While direct study of high temperature hydrothermal activity and the associated mineral formation as well as study of their scales are possible in the modern ocean, researchers are deprived of such
Aug 24, 2006
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Deepsea Mining, For The Benefit Of Mankind - IntroductionBy Robert Heydon
With the United Nations Conference on Sustainable Development fast approaching it is timely to reflect on the integral role seafloor polymetallic nodule mining will play in facilitating sustainable de
Jan 1, 2011
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Rock Phosphate: Chatham Rise, New ZealandBy Chris Castle
The Chatham Rise is a submarine topographic feature lying off the east coast of New Zealand between the South Island and the Chatham Islands and within New Zealand?s jurisdiction. The Chatham Rise hos
Jan 1, 2011
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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
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Hydrothermal Hematite/Silica Rocks from the Blanco Fracture Zone, Northeast PacificBy David A. Clague, James R. Hein, Robert W. Embley, Robert C. Vrijenhoek, Randolph A. Koski
We report preliminary results for a group of unique samples collected with MBARI’s ROV Tiburon on August 12, 2005. The samples were collected from the East Blanco Depression (EBD) diffuse-flow hydrot
Aug 24, 2006
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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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The Status Of Marine Minerals Research WorldwideBy Michael J. Cruickshank
Marine minerals are more than an academic curiosity as they represent the most significant global source of mineral materials for economically and ecologically sustainable development for the future.
Jan 1, 1996
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Manganese Nodules: New Potentials For Mining By 2000By William D. Siapno
Mining the deep ocean by the year 2000 may seem far fetched. The year 2000 is but a decade away, a scant 10 years. Remember, the youngsters of today will grow up in a little more than a decade and reb
Jan 1, 2011
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Expected TTR Licence Approval and New Zealand Law Changes Ensure Chatham Marine Phosphate Project Has More Permitting ConfidenceBy R. K. H. Falconer, Wood R. A., C. D. Castle
"A deposit of phosphate nodules is on the Chatham Rise approximately 450 kilometres to the east of Christchurch in the South Island of New Zealand. The deposit contains sufficient rock phosphate to su
Jan 1, 2017
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Cold Ocean Placers: Polar Storms, Interstadial Littorals And Crustal AdjustmentsBy Michael W. Milner
Cold Ocean Placers: Polar storms, interstadial littorals and crustal adjustments. Polar storms with consistent strong winds in the Southern, Antarctic Ocean are responsible for placer deposits on
Jan 1, 1995