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Prospecting For Submerged Treasures: Korean Deep Seabed Mining ExplorationBy Ki-Hyune Kim
The Korea Ocean Research and Development Institute conducted its first exploration for deepsea mineral resources in 1983, and began a systematic deepsea prospecting in 1989 among Micronesian islands a
Jan 1, 2011
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Methane Hydrate Exploration Around the Eastern Nankai TroughBy Masaru Nakamizu, Tetsuya Fujii, Tatsuo Saeki, Ken-ichi Yokoi
Methane hydrate, a solid compound formed from methane and water, occurs naturally in permafrost regions on-land and in deep continental slopes offshore and has been examined as future energy resource
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Optimization And Economic Efficiency Evaluation Of Manganese Nodule Carrier Using Genetic AlgorithmsBy Jae-Hyung Park
Since the Industrial Revolution, the land resources have been decreased rapidly as the industrialization. And this phenomenon brings to our mind an interest in deep-sea resource(manganese nodule). Hen
Jan 1, 2003
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MARTEMIS – An Electromagnetic Coil System for the Detection of Buried Seafloor Massive SulfidesBy 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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PROD – A “Swiss Army® Knife” for Deepwater ExplorationBy Alan Foley
The Portable Remote Operated Drill was developed in Sydney, Australia in the 1990’s. The device is a platform for many in-situ seabed sampling and coring tasks. The range of tools developed for use in
Sep 24, 2006
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The Relationship Between Coastal Sand Mining And Erosion Rates Along The Southern Monterey Bay ShorelineBy Laura Moore
The southern shoreline of Monterey Bay, extending from Moss Landing to the Monterey Peninsula, consists of sandy beaches backed by an extensive Flandrian and pre-Flandrian dune complex. This length of
Jan 1, 1994
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Simple And Effective Sampling Methods For Marine Minerals ExplorationBy J. R. Woolsey
The cost of an offshore exploration project is mainly dependent on the size of the vessel engaged for the work and increases dramatically with increasing size. Of the various factors influencing vesse
Jan 1, 1986
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Possibilities For Commercial Minerals In The Irish Offshore AreaBy M. Geoghegan
Under the provisions of the U.N. Law of the Sea Convention Ireland is likely to have mineral rights to an area of continental shelf some six times its present land area. Apart from the major potential
Jan 1, 1988
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Conceptual Proposals for Environmental Investigations of Deep-seabed MiningBy Eric J. Foell, Hjalmar Thiel, Gerd Schriever
Environmental studies for the mining of polymetallic nodules (PN) from the deep sea may be traced back for some 35 years.
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Small Scale Geothermal Development Potential For Pacific Volcanic IslandsBy Harry J. Olson
Geothermal Energy has a great potential for meeting the electrical and thermal energy requirements of many countries and territories lying along tectonically active zones within and surrounding the Pa
Jan 1, 1991
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Chatham Rise Phosphate Project ? Technical and Environmental Challenges and Economic Opportunities to Marine Phosphate Extraction in New ZealandBy Chris Castle
Following the recent award of a prospecting license by the New Zealand Government, Widespread Energy Ltd. (Widespread) is focused on the acceleration of its exploration program in order to bring a pot
Jan 1, 2010
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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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Green Minerals from the SeabedBy 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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Current Status Of Korean Deep Seabed Mining In KoreaBy Jung-Keuk Kang
Recently, the Korean government prepared a strategy for deep seabed mining, which consists of three stages for 20 years until 2010. The first step of the program is focused to conduct deep seabed expl
Jan 1, 1992
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Halogens Geochemistry in Ferromanganese Crusts – Does The Electrochemical Model Apply?By Kira Mizell, James Hein
"INTRODUCTIONThe majority of studies on the genesis of ferromanganese crusts focus on the adsorption and accumulation of metals, and therefore cations, especially those of economic interest. From thes
Jan 1, 2017
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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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The Vertical Mining Approach for SMS Deposits – Chances and ChallengesBy Leonhard Weixler, Peter Platzek
The Company Bauer Maschinen is very well known in the field of specialist foundation equipment. In the diaphragm wall market, we have experiences both in manufacturing and executing projects all over
Jan 1, 2018
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Offshore Phosphate Deposits: New Developments In U.S. WatersBy W. C. Burnett
The land phosphate deposits of the U.S. southeastern coastal plain have long been a major factor in the world trade of phosphate rock (Fig. 1). As recently as 1979, deposits of North Carolina and Flor
Jan 1, 1986
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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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Gas Hydrates as a Future Energy Resource – Scientific Aspects and PerspectivesBy 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