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Development of Offshore Mining and Dredging TechnologyBy Henk van Muijen, Jan Willem de Wit
1.1 Profile IHC Holland Merwede IHC Holland Merwede is world market leader in the construction of specialist dredging equipment and large-size custom-built offshore vessels. The clients of IHC Holla
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Hydrothermal Activity And The Formation Of Massive Sulfide Mineralization At Clark Volcano, Kermadec Arc, New ZealandClark volcano is a large volcanic center on the active arc front of the intraoceanic Kermadec arc. It is one of the two southern-most Kermadec arc volcanoes (the other being Whakatane volcano) that s
Jan 1, 2011
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Designing Ships for Deep Sea MiningBy Dilip Sarangdhar
"SeaTech Solutions International (S) Pte Ltd, Singapore are the designers of world’s first seabed mining ship. The ship is now under construction and expected to be delivered next year. The Deep Sea M
Jan 1, 2017
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Japanese Deep Sea Impact Experiment (JET) And Its Preliminary ResultsBy Katsuya Tsurusaki
Commercial mining of manganese nodules is expected to begin within the next 20 to 50 years in large areas of abyssal sea floor in the Pacific Ocean. While deep sea mining is expected to realize signif
Jan 1, 1996
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Seafloor Occurrence And Growth Stages Of KODOS Ferromanganese NodulesThe seafloor occurrences of KODOS ferromanganese nodules can be classified into four facies based on the morphological types of nodules recovered and seafloor photographs. Facies A, B, and C are relat
Jan 1, 2005
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Energy Resource or Geologic Hazard? ? A Case Study on Gas Hydrates with Special Refernce to the Western Continental Margin of IndiaBy S. Rajendran
Gas Hydrates (Methane Hydrates) are solid, ice ? like substances composed of water and natural gas. They occur naturally in areas of the world where methane and water can combine at appropriate condit
Jan 1, 2010
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German Ocean Mining-Related Environmental Studies In The South Pacific Peru Basin: DISCOL To ATESEPPBy Eric J. Foell
Recognizing that the planned commercial exploitation of polymetallic nodules in the deep sea should be accompanied by environmental studies in order to protect this largest and least understood ecosys
Jan 1, 1996
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Possible Exploitation Of Seabed Minerals Of West Coast Of IndiaBy S. Rajendran
The western continental margin comprises of the southwest coast (Cape Comorin-Mangalore), centralwest coast or Konkan coast (Mangalore-Bombay), northwest coast (Bombay-Gulf of Kutch) and the Laccadive
Jan 1, 1996
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Volcanic Edifices of the Magellan Seamount Guyots (the Pacific Ocean) and Peculiarities of their Ore OccurrencesBy T. E. Sedysheva
The study of Co-rich manganese crusts has reached the level which allows to start prospecting works in the observable future, and furthermore, probably, exploitation of ore deposits. In this connectio
Jan 1, 2010
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New Exploration Guides For Volcanogenic Massive Sulfide Deposits: From Sea To LandBy James M. Franklin
Research on modern hydrothermal systems provides quantitative measures of the processes of formation of hydrothermal fluids and of precipitation mechanisms from them. Studies of ancient deposits provi
Jan 1, 1998
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The Activities of Brazil in Relation to Deep Seabed Mineral Resources DevelopmentBy Kaiser Gonçalves de Souza
Activities of Brazil in relation to deep seabed mineral resources development are carried out in the framework of two main national programmes. They are: (1) the Program for the Assessment of Mineral
Jan 1, 2010
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Base Metals In Modern Seafloor Magmas: Influence Of Tectonic Setting On Availability And Contribution To Sulfide DepositsBy Yannick Beaudoin
The source of base metals in modern seafloor hydrothermal systems can be attributed to leaching of host rocks by hydrothermal fluids and/or potentially by direct degassing of magma. From an economic p
Jan 1, 2005
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Hydrothermal Activity, Sea Level and Glaciation: Evidence of Correlation from the Atlantic SMSBy Alexey Musatov, Georgy Cherkashov
Based on geochronological data it was confirmed that hydrothermal discharge has an episodic character: active and inactive periods of the seafloor massive sulfides (SMS) formation alternate (Cherkasho
Jan 1, 2018
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Mineralisation Associated with Submarine Volcanoes of the Southern Kermadec Arc, New ZealandBy Ian J. Graham, Cornel E. J. de Ronde
New Zealand lies astride a convergent plate boundary that extends north-eastwards from the Taupo Volcanic Zone (TVZ) to Tonga. This boundary is marked by the Kermadec arc, c. 1200 km of which falls wi
Aug 24, 2006
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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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Exploration At Boliden-Westmin?s VMS Myra Falls Operations: A Successful Example Of A Continued Application Of Evolving Geological ModelsBy Stephen J. Juras
The Myra Falls deposits comprise a complexly metal-zoned polymetallic volcanogenic massive sulfide district located 90 km from Campbell River in central Vancouver Island, British Columbia, Canada. Th
Jan 1, 1998
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Physical and Mechanical Properties of Fe-Mn Crusts and Their Underlying Rock SubstratesBy Tatiana ?. Sedysheva, Vladimir V. Ivanov, Michail E. Melnikov, Irina A. Pulyaeva
"INTRODUCTIONHydrogenetic Fe-Mn crusts are ubiquitous in the ocean basins and play an important role in marine mineral-deposit research because of their widespread occurrence and high concentrations o
Jan 1, 2017
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The Development Of Oceans Policy For New Zealand: A PerspectiveBy J. M. (Mac) Beggs
With New Zealand?s ratification of the United Nations Convention on the Law of the Sea in 1996, the government of the day increased work on developing an oceans strategy to help create a governance fr
Jan 1, 2002
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The Sonne Ore-Field -- The First Massive Sulfides From The Indian Ocean FloorBy Peter E. Halbach
The Central Indian Ridge (CIR), the boundary between the African and Indian plates, forms a SSE trending mid-oceanic accretionary system in the equatorial Indian Ocean (Fig. 1), extending to the north
Jan 1, 1994
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The Atlantis II Sea Floor Massive Sulphide Deposit, Red Sea - Current Status and Future ProgrammeBy R. D. Hamer
"The Atlantis II Deposit comprises metalliferous sediments (Zn+Cu+Ag+Au) accumulating in a composite, axial basin, 2,000m beneath the surface of the Red Sea. The basin contains warm, highly saline wat
Jan 1, 2017