Search Documents
Search Again
Search Again
Refine Search
Refine Search
-
Marine Mining And Minerals Exploration: The New Role For Academe
By J. Robert Moore
Introductory remarks will be made by the speaker, chiefly on recent and current developments in the industrial, agency and academic sectors that relate to the status of marine mining and mineral explo
Jan 1, 1986
-
Three Year Review Of The Marine Minerals Technology Center Ocean Basins Division
By Michael J. Cruickshank
The University of Hawaii, Ocean Basins Division (OBD) shares, equally with the University of Mississippi, Continental Shelf Division (CSD), congressional funding for the Marine Minerals Technology Cen
Jan 1, 1991
-
A Preliminary Look At The OMCO Data Base
By Charles L. Morgan
In a commercial effort to characterize deep seabed manganese deposits in the Clarion-Clipperton region of the northeastern tropical Pacific, Ocean Mineral s Company carried out 16 expeditions to the r
Jan 1, 1991
-
Mineral Processing of Cobalt-Rich Ferromanganese Crust and Nodules - Establishment of Treatment Flow for Removal of Substrate Rock
By Naoki Hiroyoshi, Kunihiro Hori, Kengo Sekimura, Mayumi Ito, Kouki Kashiwaya, Eiji Yamaguchi, Masami Tsunekawa
Cobalt-rich ferromanganese crusts and nodules ores from seamount areas contain volcanic and sedimentary rocks as substrate or nuclei. During the mining operation, these rocks should be separated as
-
Distal Metalliferous Sediments and Search of Underwater Hydrothermal Deposits
By 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
-
Marine Gas Hydrate Research at IFM-GEOMAR: An Overview on History and Recent Developments
By 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
-
Waste Rejection on Seafloor by Slurry Flashing for Economic Seafloor Massive Sulfide Mining
By Yuta Yamamoto
Seafloor massive sulfides (SMS) which contain Au, Ag, Cu, Zn, and Pb have been interested in as a target of commercial mining these 15 years. Japan has large potential of SMS and a national R&D projec
Sep 14, 2011
-
New Frontier Explored by D/V Chikyu
By 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
-
Paleomagnetic Results From Deep-Sea Sediment Of The Korea Deep Ocean Study (KODOS) Area (Northern Equatorial Pacific) And Their Paleodepositional Implications
By Cheong-Kee Park
Paleomagnetic properties of sediment cores were examined to reconstruct paleodepositional conditions in the Korea Deep Ocean Study (KODOS) manganese nodule area, located in the northeastern equatorial
Jan 1, 2004
-
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
-
Particle Geochemistry at Hydrothermal Vents and Implications for Mining Seafloor Massive Sulfides
By Amy Gartman
"Seafloor hydrothermal systems result in the emission of abundant particles and nanoparticles into seawater1. Many of the elements in these particles settle locally, although some are transported dist
Jan 1, 2017
-
Boiling Fluids And Unusual Mineral Deposits From Hydrothermal Vents At The South Mid-Atlantic Ridge ? Results Of Meteor Cruise M64/1
By Andrea Koschinsky
Numerous hydrothermal vents occur along the Earth?s oceanic spreading axes documenting the reaction of seawater with hot magmatic rocks. The circulation of seawater through the oceanic crust, the inte
Jan 1, 2005
-
Marine Mineral Image-Text Database
By Lu Jun
Up to now, much data on marine minerals, as well as on marine geochemistry, have been accumulated. Modem computer databases provide optimum flexibility and power for manipulating these data. The best
Jan 1, 1994
-
Offshore Diamond Mining on the African West Coast
By 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
-
Geochemistry Of Massive Sulfide-Associated Hydrothermal Exhalative Sediments, Bathurst, New Brunswick
By Jan M. Peter
Many of the Pb-Zn massive sulfide deposits of the Bathurst area in northern New Brunswick, Canada, are intimately associated with laterally continuous iron formation (IF) (Figure 1). This IF is a foss
Jan 1, 1993
-
The Campbell Ferromanganese Nodule Field (SW Pacific Ocean) Formed Beneath The Deep Western Boundary Current: An Important Source Of Paleo-Environmental And Chronostratigraphic Information
An extensive ferromanganese nodule field south of New Zealand (Fig. 1) has existed beneath the flow of the Deep Western Boundary Current (DWBC) and Antarctic Circumpolar Current (ACC) for at least the
Jan 1, 2003
-
Ferromanganese Crusts From The Kuril Basin And Kashevarov Trough Seamounts (Sea Of Okhotsk)
By P. E. Mikhailk
From July 29 to September 15, 2004, the 178th cruise of the R/V Sonne took place under the KOMEX program in the Sea of Okhotsk. One of the cruise objectives was to dredge two different kinds of seamou
Jan 1, 2005
-
Mineralization Processes At Ocean Ridges
By Johnson R. Cann
Ocean floor sulfide deposits are now known from many parts of the world mid-ocean ridge system and from some seamounts. Clearly they can be expected to occur commonly on the ocean floor. However, only
Jan 1, 1988
-
Comparative Study On Mining Robots Design For Polymetallic Nodules And Seabed Massive Sulfides
By Sup Hong
Herein, concept designs of two different types of mining robots are concerned, which are aimed for developments of deep seabed mineral resources: polymetallic nodules (PMN) and seabed massive sulfides
Jan 1, 2011
-
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