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  • IMMS
    The Selection Of The Benthic Environmental Impact Testing Site In The Korea Contracted Area, Clarion-Clipperton Zone

    By Sang Bum Chi

    In order to better predict and manage benthic disturbance by deep seabed manganese nodules mining, we needed to conduct a benthic disturbance experiment at the selected area, which has a similar envir

    Jan 1, 2011

  • IMMS
    Eastern English Channel Broadscale Mapping

    By 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

  • IMMS
    Deployment And Retrieve Of Deep Water Miner

    By Chul H. Jo

    The functions of miner mainly include the pick-up manganese nodules laying on the surface of the seafloor, the separation them from sediments, the crushing the nodules and the covey to the inlet of th

    Jan 1, 2003

  • IMMS
    Japanese Deep Sea Impact Experiment (JET) And Its Preliminary Results

    By 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

  • IMMS
    Placer Minerals Of The West Coast Of India: A Retrospective & Prospective

    By Subramanian Rajendran

    Placer minerals are one of the rich natural resources readily made available primarily and broadly in the form of inland placers, beach placers and offshore placers. The exploitation of placer mineral

    Jan 1, 2001

  • IMMS
    Elemental Correlations And Distributions Of KODOS Ferromanganese Nodules, Focused On SiO2 And CaO

    Although Mn, Fe, Cu, Ni, and Co have been the main interests since the ferromanganese nodules had been found, the other major components such as Si and Ca might be very important controlling factors i

    Jan 1, 2004

  • IMMS
    Ultramafic-Hosted Mineralization And Diversity Of Hydrothermal Processes Along Slow Spreading Ridges

    By Yves Fouquet

    Recent exploration demonstrates that hydrothermal systems related to upper mantle ultramafic outcrops are common in the modern ocean. Most sites are located on slow spreading ridges with a low magmat

    Jan 1, 2004

  • IMMS
    Critical Elements in Hydrothermal Manganese Deposits from the Global Ocean

    By Samantha Whisman, James R. Hein

    Hydrothermal marine manganese-oxide deposits (HMMD) are cemented and variously replaced volcaniclastic and biogenic sediments that were mineralized by distal, low- temperature, hydrothermal fluids. HM

    Jan 1, 2018

  • IMMS
    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

  • IMMS
    Establishment Of The Endeavour Hydrothermal Vents Marine Protected Area

    By S. Kim Juniper

    The discovery of chemosynthetic-based ecosystems at hydrothermal vents in the deep ocean was arguably one of the most important findings in biological science in the latter half of the 20th century. M

    Jan 1, 2001

  • IMMS
    Real Time Acquisition Of Digital Seismic Data In A GIS Environment

    By Doug Lockhart

    The Marine Minerals Technology Center has taken advantage of recent price and performance .improvements in PC hardware and software to upgrade its seismic acquisition system. In the past, single chann

    Jan 1, 1992

  • IMMS
    Hydrothermal Sulfide Deposits In Lakes

    By 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

  • IMMS
    Integrated Ship, Submersible, ROV And Ocean-Bottom Observatory Design For Ocean Mineral Studies At The University Of Hawaii

    By Alexander Malahoff

    A shipboard research system capable of operating in waters of up to 2,000 m has been designed and implemented by the Hawaii Undersea Research Laboratory (HURL), University of Hawaii. It uses a remotel

    Jan 1, 1992

  • IMMS
    Seafloor Features In Urals Massive Sulfide

    By V. Zaykov

    The Urals massive sulfide deposits are concentrated in Silurian -Devonian fold belt extending for 1500 km with length from 50 to 150 km. By paleodynamic reconstmction it is established that they were

    Jan 1, 1993

  • IMMS
    Effective Exploitation Of Some Mineral Deposits Along The Continental Margin Of Kerala, India

    By S. Rajendran

    Much advance has been made in offshore hydrocarbon exploration and exploitation in India. But the same amount of success could not be achieved in the case of other offshore minerals which are amenable

    Jan 1, 1993

  • IMMS
    Conceptual Proposals for Environmental Investigations of Deep-Seabed Mining (36th Underwater Mining Institute · 24-30 September 2006)

    By Hjalmar Thiel

    Issues of deep-seabed mining are discussed since four decades and extensive efforts have been invested in oceanographic studies related to environmentally sound harvesting of polymetallic nodules. B

    Aug 24, 2006

  • IMMS
    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

  • IMMS
    Genetic Relationship Between Ultramafic/Mafic-Hosted Massive Sulfides And Their Host Rocks At The Logatchev Hydrothermal Field At 14°45?N (MAR) Using PGE Geochemistry And Os Isotopes

    By T. Kuhn

    The Logatchev hydrothermal field is situated on the east inner flank of the rift valley of the MAR at 14°45?N and is hosted by serpentinized peridotites and minor gabbronorites while basalts are subor

    Jan 1, 2004

  • IMMS
    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

  • IMMS
    Acoustic Techniques For Marine Geological Studies

    By Russell Parrott

    Acoustic techniques offer a rapid, economical, non-intrusive method of obtaining information about the stratigraphy and properties of seafloor sediments. During the past decade there has been a dramat

    Jan 1, 1985