Search Documents
Search Again
Search Again
Refine Search
Refine Search
-
Plumes of Deep-Sea Mining: What Do We Know?By Georgy Cherkashov, Livia Ermakova
Active development of the exploration and further exploitation of deep-sea minerals requires special emphasis on the protection of the marine environment. The complexity of this subject lies in the fa
Jan 1, 2018
-
Particle Geochemistry at Hydrothermal Vents and Implications for Mining Seafloor Massive SulfidesBy 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
-
Processes of Metal Sulfide Oxidation at Hydrothermal Vents and in Seafloor Massive SulfidesBy Amy Gartman
The interactions between hydrothermal fluids and seawater result in minerals that range in size from nano- to macro-scale and constrain mineral emplacement, whether in hydrothermal chimneys or metalli
Jan 1, 2018
-
A Geologic Survey Of The Near-Shore Regions Around White Island, New Zealand; Sidescan Imagery, Rock And Gas Samples From The 1995 MMTC-WIS Survey.By Gregory J. Kurras
In 1995 the Marine Minerals Technology Center (MMTC) of the University of Hawaii conducted a sidescan sonar survey and sampling expedition of the submarine geology and hydrothermal systems surrounding
Jan 1, 2011
-
The Scientific, Engineering And Environmental Challenges Of Developing A Seafloor Massive Sulfide Project In The Western PacificBy David Heydon
NAUTILUS MINERALS is a leader in the commercial exploration for and evaluation of seafloor massive sulfide (?SMS?) deposits. Nautilus has exploration licences covering 15,000 sq km of seafloor in Papu
Jan 1, 2005
-
Dynamic Mineral Recrystallization – Implications for Sustainable Trace Metal Recovery from Deep-Sea Ferromanganese DepositsBy Tobias Hens, Andrew Frierdich, Barbara Etschmann, Joël Brugger, Barrie Bolton
"Ferromanganese (Fe-Mn) nodules and crusts are prime targets for future deep-sea mining ventures due to their unusual enrichment of critical metals, such as Ni, Co, Cu, Ti, Te, Zr, Hf, Nb, Y, and REE.
Jan 1, 2017
-
Towards Zero Impact: Assessment Of Ecological Impact For Tailings ReturnBy Wiebe Boomsma
This is a framework study financed by the Maritime Innovation Programme of The Netherlands and several institutions actively involved in the research of the environmental impact of deep sea mining; IH
Sep 14, 2011
-
Model of CCZ Geological Evolution and Nodules Potential FormationBy Valery M. Yubko
"The conceptual basis of the developed model is based on the ideas that evolution of geological-geomorphological structure of the CCZ is controlled by four types of geologic factors: geodynamic, sedim
Jan 1, 2017
-
Managing Deep Sea Tailings Placement And The Environment: An Analogue For Deep Sea MiningBy Tracy Shimmield
Deep sea tailings placement (DSTP) techniques have been pioneered in Papua New Guinea (PNG): a mining reliant economy in a seismically active region, facing major environmental challenges in the safe
Sep 14, 2011
-
Fundamental Study Of UV-Fluorescence Sensing System For Seafloor Massive Sulfides ? IntroductionBy Tetsuo Yamazaki
Seafloor massive sulfides (SMS) in the western Pacific have received much attention as resources for gold, silver, copper, zinc, and lead (Lenoble, 2000). Since the end of the 1980s, SMS have been fou
Jan 1, 2011
-
A New Concept Of Easy Pre-Site Survey Method Of Deep Sea Hydrothermal DepositsBy Shinichi Takagawa
The deep sea hydrothermal deposits are one of the most prospecting resources, and various works to develop these mines are now underway. There are also various methods for the pre-site survey of th
Jan 1, 2011
-
An Innovative Seafloor Drill System For Offshore Geotechnical Site Investigation And Seafloor Mineral ExplorationBy Tim J. Boyd
Gregg Marine, Inc. (headquartered in Signal Hill, California) has recently introduced an innovative seafloor drill system for offshore geotechnical site investigation and seafloor mineral exploration.
Jan 1, 2011
-
Research and Development on an Ultraviolet Laser Raman Spectrometer for Deep-Sea ApplicationBy Ning Yang, Yuxiang Chen, Ming Chen
An ultraviolet laser Raman spectrometer was developed to detect and analyze material components of seawater, seafloor sediment and rock at a depth of 7000m maximally. Wave length of the excitation res
Jan 1, 2017
-
Free-Standing Riser for Deep-Seabed Mining?By Sup Hong
"Lifting riser in deep-seabed mining (DSM) is exposed to acute and chronic stresses of materials, whose yield will result in the most critical loss of total mining system. For freehanging riser (FHR),
Jan 1, 2017
-
S-XRF Imaging of Fe-Mn Nodules and Crusts – A Cutting-Edge Technique to Decipher Trace Metal Speciation and DistributionBy Tobias Hens, Andrew Frierdich, Barbara Etschmann, Joël Brugger, Barrie Bolton
"Advancing our knowledge about trace metal distribution and abundance provides insight into formation, alteration, and trace element enrichment processes of ferromanganese nodules and crusts. A fundam
Jan 1, 2017
-
The Escanaba Trough, Southern Gorda Ridge: Sulfide Deposits And Hydrothermal Processes At A Sediment-Covered Spreading Axis Within The U.S. Exclusive Economic ZoneBy Randolph A. Koski
Since 1985, numerous constructional sulfide-sulfate deposits in the form of mounds, pinnacles, chimneys, and sheets have been located between 40°45' and 41°05'N latitude in Escanaba Trough,
Jan 1, 1988
-
National Needs - Hard Mineral DependenciesBy Raymond Kaufman
While there is no immediate worldwide shortage of hard minerals, the consumption of natural resources is constantly increasing, and there are ominous predictions of shortages to come. Means of meeti
Jan 1, 1975
-
Towards a Formal Definition of Active and Inactive Seafloor Massive Sulfide DepositsBy J. W. Jamieson
INTRODUCTION Hydrothermal vents that form seafloor massive sulfide (SMS) deposits represent unique biodiversity hotspots that host many species that are found only at these sites. The destruction of t
Jan 1, 2018
-
Trace Elements In Massive Sulfides From The Semenov-2 Hydrothermal Field, 13º31´ N, Central Atlantic: ICP-MS And LA-ICP-MS DataBy Irina Melekestseva
The Cu-Zn massive sulfides from the basalt-hosted Semenov-2 hydrothermal field (13°31.13´ N, 44°59.03´ W, MAR) are enriched in Au (22?188 ppm) and Ag (127?1787 ppm) [Ivanov et al., 2008] and elevated
Sep 14, 2011
-
Suitable Site Selection for Manganese Nodule Development in the Korea Licensed Area using GIS MethodsBy Youngtak Ko
The northeastern Pacific shows the highest nodule abundance among the oceans in the world, and thus has been drawing international attention for deep-sea manganese nodule development. The objectives o
Sep 14, 2011