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  • 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
    GSR’s PROCAT-Project: Technical de-Risking of Deep Sea Mining Equipment – A Step-By-Step Approach towards Future Exploitation

    By Kris De Bruyne

    Since 2013, GSR has undertaken 4 exploration campaigns, which focused on environmental baseline monitoring (marine biology), resource definition and technological change. The seabed nodule collection

    Jan 1, 2018

  • IMMS
    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

  • IMMS
    Mineralogical and Geochemical Characterization of Deep-Sea Metalliferous Sediments of the TAG Area

    By Jelena Milinovic, Sofia Martins, Anna Lichtschlag, Sven Petersen, Fernando J. A. S. Barriga, Bramley Murton, Adeline Dutrieux

    "The active TAG hydrothermal mound is one of the largest and better studied. Due to its size (one of the largest, known so far, in the Atlantic Ocean) and concentration of specific economic valuable e

    Jan 1, 2017

  • IMMS
    Towards a Formal Definition of Active and Inactive Seafloor Massive Sulfide Deposits

    By 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

  • IMMS
    On The Possibility Of Offshore Mineral Occurrences In Greenland Waters

    By P. U. W. Appel

    Despite the very large offshore Exclusive Economic Zone (EEZ) area of Greenland (in excess of 2 mill. km2) virtually no work has been carried out on marine minerals on the ocean floor. Apart from a si

    Jan 1, 1988

  • IMMS
    Ultra-Fast Segmentation And Quantification Of Polymetallic Nodule Coverage In High-Resolution Digital Images

    By T. Schoening

    The exploration of the seafloor regarding the abundances of poly-metallic nodules has received growing attention recently. Image-based exploration using cameraequipped deep-sea observation systems has

    Sep 14, 2011

  • IMMS
    Tellurium-Rich Ferromanganese Crusts

    By James R. Hein

    Ferromanganese oxyhydroxide crusts (Fe-Mn crusts) precipitate out of cold ambient seawater onto hard-rock surfaces at water depths of about 600-4000 m throughout the ocean basins. Fe-Mn crusts concen

    Jan 1, 2000

  • IMMS
    Sediment Sources, Pathways And Sinks In The Southern North Sea And Eastern English Channel

    By Brian D?Olier

    Much of the aggregate that is being exploited at present from these areas is a ?relic? deposit. It was originally eroded from primary source rocks and transported to a depositional centre by processes

    Jan 1, 2004

  • IMMS
    Current Status Of Korean Deep Seabed Mining In Korea

    By Jung-Keuk Kang

    Recently, the Korean government prepared a strategy for deep seabed mining, which consists of three stages for 20 years until 2010. The first step of the program is focused to conduct deep seabed expl

    Jan 1, 1992

  • IMMS
    Possibilities For Commercial Minerals In The Irish Offshore Area

    By M. Geoghegan

    Under the provisions of the U.N. Law of the Sea Convention Ireland is likely to have mineral rights to an area of continental shelf some six times its present land area. Apart from the major potential

    Jan 1, 1988

  • IMMS
    Mineralogy and Chemistry of Ferromanganese Nodules in the Campbell Nodule Field

    By Hunsoo Choi, Sung Rock Lee, Ian J. Graham, Ian C. Wright

    This is a part of the joint KIGAM-GNS-NIWA 3-year study of ferromanganese modules in the Campbell Nodule Field, east of Campbell Plateau to determine age distribution, growth rates and geochemical evo

    Aug 24, 2006

  • IMMS
    Gas Hydrates Of The West Coast Of India: A Neo-Tectonic Perspective (1d4cfd86-5c10-440c-a519-a1146741f386)

    By 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, 2002

  • IMMS
    Environmental Studies Of A Manganese Nodule Field In The Peru Basin (Southeast Pacific)

    By Ulrich Von Stackelber

    Deep sea mining of manganese nodules actually will have an environmental impact to the seafloor and to the water column. However, we are far from being able to predict the possible consequences. There

    Jan 1, 1994

  • IMMS
    A Multidisciplinary Field Study of Cobalt-Rich Crusts, Tropic Seamount, North-East Atlantic: Marine E-Tech

    By Mark Lee, Isobel Yeo, Sarah Howarth, Christian Millo, Javier González Sanz, Paul Lusty, Bramley Murton, Pierre Josso

    "Seafloor cobalt-rich ferromanganese crusts represent the most important yet least explored resource of ‘E-tech’ elements on the planet (Hein et al. 2003; ISA, 2008; Hein et al. 2010; Hein et al. 2013

    Jan 1, 2017

  • 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
    Universal Tool And Technology For Seabed Borehole Mining

    By Grigori Abramov

    As we enter into the 21st Century, miners are looking more attentively at new mining technologies allowing decrease environment damage along with operational cost. This technic would allow developing

    Jan 1, 2000

  • IMMS
    Exploration For Seafloor Polymetallic Sulfide Deposits Using Particle Concentration Gradients In Hydrothermal Plumes

    By Timothy F. McConachy

    Hydrothermal fluids emanating from the seafloor rise as buoyant plumes, entraining ambient bottom sea water on the way up, until they reach density equilibrium and spread laterally in a direction that

    Jan 1, 1986

  • IMMS
    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

  • IMMS
    Characterization Of Sand Mining Plumes

    By N. Wang

    The City of Honolulu mines sand from nearshore deposits for beach maintenance. The suction dredging operation creates a discharge plume which is carried by currents and other motions until it settles

    Jan 1, 1991