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Kuroko-Type Deposits From The Izu-Ogasawara (Bonin) Arc, JapanBy Kokichi Iizasa
Kuroko-type deposits exist in Japanese EEZ. Some of them are present in the Izu-Ogasawara oceanic island arc south of Tokyo. Major two Kuroko-type deposits occur in the area. One is the Sunrise hydr
Jan 1, 2002
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Offshore Diamond Mining on the African West CoastBy Robert Goodden
It is well known that diamonds are found in Kimberlite pipes within the earth’s crust and are also discovered where erosion has released them to be concentrated by rivers in trap sites within alluvial
Sep 24, 2006
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Hydrothermal Sulfide Deposits In LakesBy Sophia Katsouri
Hydrothermal circulation that produces sulfide deposits in the marine environment can also produce sulfide deposits in lakes. The major differences in terms of process are (1) in lakes the hydrotherma
Jan 1, 2001
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Evaluating Benthic Community Disturbance And Succession Following Simulated Manganese-Nodule Mining In The Equatorial PacificBy Fred C. Dobbs
To effectively manage the potential environmental impacts of deep-sea mining of manganese nodules, we need to know substantially more about the effects of sediment redeposition on abyssal communities
Jan 1, 1992
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The Seabed Sampling Mobile ApparatusBy ?. V. Kabanov
n considered operation hydraulic and kinematic circuits of deep-water installation for sampling a ground from a sea-bottom are submitted. Control by setters is made remotely from a service station wit
Jan 1, 2005
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Iron And Manganese Oxide Deposits As Environmental Records: Examples In The NW Pacific Ocean And The Baltic SeaBy Akira Usui
Iron and manganese are very mobile metallic elements in the surface aqueous environment, particularly in the oceans. The elements are easily precipitated as oxides or dissolved back into water, contro
Jan 1, 2004
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Submarine Hydrothermal Activity and Mineralization on the Kurile and Western Aleutian Island Arcs, NW PacificBy T. Semkova, G. Cherkashov, V. Rashidov, L. Anikeeva, G. Gavrilenko, G. Glasby
The Kurile Arc consists of at least 100 submarine volcanoes and 5 submarine calderas located mainly in the rear arc (Figure 1). The arc is seismically very active, particularly in the south, and is
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Eastern English Channel Broadscale MappingBy Sally Philpot, Siân E. Boyd, Hubert L. Rees, Emma Bee, Carla Houghton, Ceri James, Silvana N. R. Birchenough, S. Limpenny David, A. Coggan1 Roger, Koen Vanstaen
Every year approximately 22 million tonnes of marine sand and gravel are dredged form British waters. The eastern English Channel (EEC) contains substantial reserves, a proportion of which have been
Sep 24, 2006
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Preliminary Report: The Third Marine Kuroko-type Deposit in the Area 200 km2 of a Major Kuroko Province in JapanBy H. Shimoda, K. Tamaki, K. Iizasa, M. Watanabe, K. Okamura
Modern Kuroko-type deposits occur in submarine calderas of island-arc fronts and back-arc rifts in Japan. They occur primarily on or adjacent to caldera boundary faults. Hydrothermal sulfides in the M
Aug 24, 2006
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Black Sands In The Pacific Mexican LittoralBy Arturo Carranza Edwards
One hundred ninety nine beach face sand samples from an equal number of beaches from the Mexican Pacific were studied. Based on petrological and chemical analysis some locations have been studied in m
Jan 1, 1994
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Past, Present and Future of Mn-nodules Development of Korea in the NE Equatorial PacificIn early 1990s, the Korean government has launched a deep-sea research program to secure the stable long-term supply of strategic metallic minerals including Cr, Cu and Ni. Through the pioneering surv
Sep 14, 2011
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Seafloor Massive Sulfides: Lessons from Land and SeaBy Steven D. Scott
A geologist can be likened to a medical pathologist trying to figure out from faint clues how something had lived and how it died, often long after the event. Present-day seafloor hydrothermalism has
Aug 24, 2006
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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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Sediment Geochemistry Associated With Polymetallic Nodules In The Central Mexican Pacific ? IntroductionThe 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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Marine Gas Hydrate Research at IFM-GEOMAR: An Overview on History and Recent DevelopmentsBy G. Rehder, C. Hensen, P. Linke, J. Bialas, M. Haeckel, W. Weinrebe, K. Wallmann
Research on marine gas hydrate and the methane cycle has a tradition at IFM-GEOMAR. In summer 1996 during a cruise with RV SONNE offshore Oregon (USA) scientists of the former GEOMAR recovered the lar
Aug 24, 2006
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Distribution of Manganese Deposits from Cretaceous to Recent -Overview of Studies of Buried Manganese Deposits in DSDP/ODP CoresBy Takashi Ito
Numerous studies have examined the distribution of deep-sea manganese deposits throughout geologic history. Here I summarize the recent results, focusing on the frequency of occurrence, burial age a
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Chemical And Mineralogical Form Of Platinum In Cobalt-Rich Ferromanganese CrustsBy Akira Usui
Platinum is one of the most rare elements in the earth?s crust, but it is significantly enriched in some hydrogenetic ferromanganese crusts in the ocean. The element is essential to the electric indus
Jan 1, 2005
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Current Plans And Activities By South Africa To Assess Marine Minerals Potential: An UpdateBy 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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The Features Of China's Pioneer Area And The Strategy Of COMRABy Cheng Xiangzhou
The China's Pioneer area includes two parts. The topography in the western part is very different from that in the eastern one. The distribution of the manganese nodules in these two regions diff
Jan 1, 1996
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Ferromanganese Crusts from the Afanasiy-Nikitin Seamounts in the Eastern Equatorial Indian Ocean: A ReviewBy V. K. Banakar, R. P. Rajani, A. R. Chodankar
The Afanasiy-Nikitin Seamounts (ANS) in Eastern Equatorial Indian Ocean (Figure 1) are shown to be the exposed part of the presently buried 85°E Ridge system under the Bengal Fan sediment and were e