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Organization Of The International Marine Mineral Society
By William D. Siapno
The International Marine Minerals Society has now come of age! Previously known as the International Marine Mining Society, it was an informal group without officers, by-laws or official status. Despi
Jan 1, 1986
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The Marine Minerals Technology Center - New Research Programs For Developing Continental Shelf And Deep Ocean Minerals
By J. R. Woolsey
Research grants of The Marine Minerals Technology Center (MMTC) are directed toward development of the technology 'for exploration, mining, and processing of non-fuel mineral resources within the
Jan 1, 1989
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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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Current Plans And Activities By South Africa To Assess Marine Minerals Potential: An Update
By Peter M. Bartlett
The Republic of South Africa ranks among the world leaders in both reserves and production of numerous land-based mineral commodities. Over the last three decades, however, South Africa has also ident
Jan 1, 1986
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Detection and Quantification of Seafloor Ilmenite Deposits Utilizing Induced Polarization
By 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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Overview of Cobalt-Rich Ferromanganese Crusts, Seamounts, and the Outlook for Mining
By Akira Usui, James R. Hein, Rachel Dunham
Ferromanganese crusts are found on most hard-rock substrates in the deep ocean (800-3,000 m). Their distributions on seamounts are complex and controlled by a wide-variety of factors including seamo
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Deepsea Mining, For The Benefit Of Mankind - Introduction
By 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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Ocean Mining, Undersea Mining Or Offshore Mining In The Chilean National Legislation, In The International Law And Its Technological Progress
By Winston Rocher Anda
Traditionally, mining activities have been developed in firm land, but technological advances and human needs have opened in the last year?s new opportunities in the maritime field. This has happened
Jan 1, 2011
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Modeling of Methane Plume Behavior in a Water Column
By Daisuke Monoe, Kisaburo Nakata, Rika Takeuchi, Tetsuo Yamazaki, Tomoaki Oomi, Tomohiko Fukushima
There are generally two methane passes in conjunction with the seafloor natural cold seepages, as is schematically shown in Fig. 1. The first pass consists of the coupled anaerobic oxidation of methan
Sep 24, 2006
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Polymetallic Nodules as a Future Deep Sea Mineral Resource
By U. Schwarz-Schampera, C. Rühlemann, H. -R. Kudrass
Within 2006 BGR will conclude a contract with the UN International Seabed Authority (ISA) for the exploration of polymetallic nodules. The contract covers an area in the Pacific nodule belt between th
Aug 24, 2006
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Self-Potential Surveys Using Multiple Platforms for Exploration of Submarine Hydrothermal Ore Deposits
By Takafumi Kasaya, Katz Suzuki, Yoshifumi Kawada
"INTRODUCTIONThe area beneath the seafloor preserves valuable resources that are inevitable to sustain our industrial society. Hydrocarbon resources such as petroleum and natural gases are one of the
Jan 1, 2017
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Application of Radiometric Dating Methods to Modern Seafloor Volcanic Massive Sulfide Deposits: Insights into Hydrothermal Processes
By Robert G. Ditchburn, Cornel E. J. de Ronde, Bernard J. Barry
The age of mineralization, its mode of formation, the time elapsed to amass an economic deposit, its capacity for sustainable extraction and, ultimately, its grade and tonnage, are key aspects in th
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Sediment Geochemistry Associated With Polymetallic Nodules In The Central Mexican Pacific ? Introduction
The chemical composition of the nodules varies with the type of manganese minerals and the size and characteristics of their nucleus, but those who have an economic interest have the following composi
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, PNG
By 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
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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 Crusts
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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Distribution Of Radionuclides During Weathering And Erosion In Saquarema (Rio De Janeiro): Implications For Submerged Monazite Deposits In Adjacent Offshore Areas
By V. M. Hamza
Analysis of ground and airborne radiometric measurements in the Saquarema region (Rio de Janeiro) provides new insights into the breakdown and transport of mineral aggregates containing monazites, und
Sep 14, 2011
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Gas Hydrates as a Future Energy Resource – Scientific Aspects and Perspectives
By Christian Müller, Hermann-Rudolf Kudrass, Christian Reichert
Recent studies estimate the depletion mid-point (dmp) for conventional natural gas to be reached around year 2022, and for conventional oil to be reached around year 2017. These numbers are based on
Aug 24, 2006
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Preliminary Economic Evaluation of Deep-sea REE Mud Mining
By 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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ACS: A Seafloor Drilling System for the Deepsea Methane Hydrate Program Offshore India
By M. E. Williamson
A seafloor based robotic drilling system is being developed for the National Institute of Ocean Technology in Chennai, India to support a National initiative for marine methane hydrate research. The