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  • IMMS
    Deep Seabed Resource Potential

    By G. A. Gross

    Technological development in the last two decades has provided access to the deep seabed and opened a new frontier for exploration. Interest in Canada has focused mainly on study of metallic mineral o

    Jan 1, 1985

  • IMMS
    Gas Hydrates as a Future Energy Resource – Scientific Aspects and Perspectives

    By Christian Müller, Hermann-Rudolf Kudrass, Christian Reichert

    Recent studies estimate the depletion mid-point (dmp) for conventional natural gas to be reached around year 2022, and for conventional oil to be reached around year 2017. These numbers are based on

    Aug 24, 2006

  • IMMS
    Pacmanus: An Actively-Forming Submarine Polymetallic Sulfide Deposit In Felsic Volcanic Rocks Of The Manus Back-Arc, Papua, New Guinea

    By Steven D. Scott

    The 1991 PACMANUS Expedition (Papua New Guinea-Australia-Canada in the Manus Basin) discovered a very large (approximately 800 x 350 m) actively-forming seafloor polymetallic sulfide 4 deposit in fels

    Jan 1, 2011

  • IMMS
    Challenges of Deep Water Mining: A key to better operation in deep waters is obtaining the information at the resolution necessary for the application. Technology advances now allows high resolution data collection in the most challenging water depth

    By Francois P. Leroy

    In the quest of studying the assigned blocks of seafloor for deep water mining, each member country of the ISA is thirsty for accurate information as to the level of resources available. Manganese nod

    Jan 1, 2010

  • IMMS
    The Mineralogy And Sulfur Isotope Geochemistry Of Hydrothermal Precipitates From 15°S Active Vent Site At South Atlantic Mid-Ocean Ridge

    By Ye Jun

    Until now, more than 200 sites of sea-floor hydrothermal activities are known on the midocean ridge but few of them are documented on South Mid-Atlantic Ridge (SMAR). This on some extent restricts our

    Sep 14, 2011

  • IMMS
    New Opportunities For International Cooperation In Marine Mineral Development

    By W. D. Siapno

    Marine mineral resources have been reviewed in great detail on numerous occasions over the past few years. A summary of these efforts would indicate there is little new on the horizon as far as econom

    Jan 1, 1988

  • IMMS
    Examining Extraction Options For Mining Seafloor Massive Sulphide Deposits

    By Cameron Rees

    The University of New South Wales Mining Research Centre (UMRC) has a longstanding research reputation in mining research, with particular expertise in mining systems, mining geomechanics and excavati

    Jan 1, 2002

  • IMMS
    MARTEMIS – An Electromagnetic Coil System for the Detection of Buried Seafloor Massive Sulfides

    By S. Hölz, M. Jegen, K. Reeck, A. Haroon

    Past investigations of seafloor massive sulfides (SMS) focused on actively forming sites. New technologies are needed to explore for SMS deposits which have finished their active phase and are possibl

    Jan 1, 2018

  • 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
    EVA A Robotic Vehicle for Underwater Mining Operations Support

    By Carlos Almeida, Bruno Matias, Stef Kapuskiak, Eduardo Silva, José Miguel Almeida, Alfredo Martins

    Underwater intervention operations have been supported by robotic systems such as remotely operated vehicles (ROV) for a long time. In particular challenging scenarios such as the deep sea, the use of

    Jan 1, 2018

  • IMMS
    Sediment Geochemistry Associated With Polymetallic Nodules In The Central Mexican Pacific (b3c525db-f011-4388-9f02-d4c9c8866c14)

    The 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 nucleus, generally : M

    Sep 14, 2011

  • IMMS
    Prospecting For Submerged Treasures: Korean Deep Seabed Mining Exploration

    By Ki-Hyune Kim

    The Korea Ocean Research and Development Institute conducted its first exploration for deepsea mineral resources in 1983, and began a systematic deepsea prospecting in 1989 among Micronesian islands a

    Jan 1, 2011

  • IMMS
    Small Scale Geothermal Development Potential For Pacific Volcanic Islands

    By Harry J. Olson

    Geothermal Energy has a great potential for meeting the electrical and thermal energy requirements of many countries and territories lying along tectonically active zones within and surrounding the Pa

    Jan 1, 1991

  • IMMS
    Number 8 Wire Technology ? Keeping The Costs Down

    By Keith Gordon

    The recent discoveries of hydrothermal activity in the ocean off New Zealand have created interest in the business community in the commercial possibilities of mining associated marine polymetallic su

    Jan 1, 2002

  • IMMS
    Conceptual Proposals for Environmental Investigations of Deep-seabed Mining

    By Eric J. Foell, Hjalmar Thiel, Gerd Schriever

    Environmental studies for the mining of polymetallic nodules (PN) from the deep sea may be traced back for some 35 years.

  • IMMS
    Comparative Analysis of Deep-Sea Minerals

    By Pedro Madureira, Georgy Cherkashov, Harald Brekke, Marzia Rovere

    "The most promising deep-sea mineral resources for exploration in the Area (beyond the limits of national jurisdiction) are polymetallic nodules, cobalt-rich ferromanganese crusts and polymetallic sul

    Jan 1, 2017

  • IMMS
    Strategies Of India As A Pioneer Investor

    By S. Rajendran

    India?s interest in the resources of the deep seabed particularly the manganese nodules in the Indian Ocean can be traced back to the Indian Ocean Expedition of 1960 ? 65. The collection of Manganese

    Jan 1, 2003

  • IMMS
    Pelagic Sediments Associated with Polymetallic Nodules in the Clarion Area Fracture Zone (0561cd29-9a1e-44e4-ad6d-1907506df123)

    By Marlene Olivares Cruz

    The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th

    Sep 14, 2011

  • IMMS
    Marine Mineral Resources Of The East Coast Of The U.S.: A Review

    By Carl H. Hobbs

    The marine mineral resources of the U.S. middle and south Atlantic shelf are little utilized. The largest resource, sand and gravel, is used for beach nourishment and protection and, to a much lesser

    Jan 1, 1992

  • IMMS
    Geochemistry Of Rare Earth Elements In Hydrothermal Sediments

    By Robert M. Owen

    The rare earth elements (REE1s; atomic number 57 -71) exhibit a coherent chemistry, are widespread in nature, and tend to occur in characteristic concentrations in different geochemical phases. Becaus

    Jan 1, 1989