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  • IMMS
    Deepsea Mining, For The Benefit Of Mankind - Introduction

    By Robert Heydon

    With the United Nations Conference on Sustainable Development fast approaching it is timely to reflect on the integral role seafloor polymetallic nodule mining will play in facilitating sustainable de

    Jan 1, 2011

  • IMMS
    Rock Phosphate: Chatham Rise, New Zealand

    By Chris Castle

    The Chatham Rise is a submarine topographic feature lying off the east coast of New Zealand between the South Island and the Chatham Islands and within New Zealand?s jurisdiction. The Chatham Rise hos

    Jan 1, 2011

  • IMMS
    New Directions In The Marine Minerals Program At The U.S. Minerals Management Service

    By LeRon E. Bielak

    The marine minerals program of the Minerals Management Service (MMSI has undergone significant changes during 1991. Formerly the Office of Strategic and International Minerals, the program has been re

    Jan 1, 1991

  • IMMS
    Canadian Experience In Interpreting The "Law Of The Sea" With Reference To The Development Of Marine Mineral Resources

    By Richard T. Haworfh

    The United Nations Convention on the Law of the Sea (UNCLOS) entered into force, for those nations who had ratified it, on November 16, 1994. The Convention deals with nearly every aspect of ocean aff

    Jan 1, 1996

  • IMMS
    Lessons From Marine Diamond Mining

    By Richard H. T. Garnett

    Large scale, profitable, offshore mining of cassiterite started in 1907 around the coast of south Thailand and continues today in Indonesia. The more complex marine mining of diamonds commenced in the

    Jan 1, 2004

  • IMMS
    The Japan/Sopac Co-Operative Deep-Sea Mineral Resources Study Project: Report On Results Of Activities Between 2000 To 2002, With An Emphasis On Results Of Marine Drilling In The North Fiji Basin, Fiji?s EEZ

    By Nobuyuki Okamoto

    The present three-year long phase of the SOPAC/Japan Deep Sea Co-operative Mineral Resources Programme [Programme], commenced in 2000. The Programme has been funded by the Government of Japan through

    Jan 1, 2002

  • IMMS
    Evaluating Grade and Tonnage Estimates of Seafloor Massive Sulfide Deposits

    By J. W. Jamieson

    "The future of the marine mining industry is tied to the resource potential of the seafloor. Everything from economic feasibility, policy decisions and environmental impact assessments to extraction t

    Jan 1, 2017

  • IMMS
    Deepwater Seafloor Resource Production ? Development of the World?s Next Offshore Frontier

    By Glen Smith

    Nautilus Minerals, the world?s leader in exploration and development of deep ocean seafloor resources, is today focused on the recovery of high-grade copper and gold in seafloor massive-sulphide miner

    Jan 1, 2010

  • IMMS
    Characteristics of Hydrothermally Altered Wall Rocks from Modern Hydrothermal Fields

    By C. W. Devey, K. S. Lackschewitz

    The mineralogy and geochemistry of hydrothermally altered wall rocks from different modern basaltic- and felsic-hosted hydrothermal fields at seafloor spreading centers and convergent margins have bee

    Aug 24, 2006

  • IMMS
    Distribution of Manganese Deposits from Cretaceous to Recent -Overview of Studies of Buried Manganese Deposits in DSDP/ODP Cores

    By Takashi Ito

    Numerous studies have examined the distribution of deep-sea manganese deposits throughout geologic history. Here I summarize the recent results, focusing on the frequency of occurrence, burial age a

  • IMMS
    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

  • 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
    The Strength Characteristics Of Deep Seabed Sediment

    By Ivo Dreiseitl

    The interaction between nodule harvester and eupelagic sediment on the seabed is definitely one of the key aspects of mining technology for polymetallic nodules which is to be studied in details. Phys

    Jan 1, 2011

  • IMMS
    Trends In Deep Seabed Mining Technology: An Examination Of The International Patent Record

    By Anthony T. Jones

    Deep seabed mining requires technology to collect materials and transport them to the surface. An international patent search was conducted to define the state of the art in seabed mining technology.

    Jan 1, 2001

  • 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
    Application Of Ferromanganese Marine Mineral Tailings In Concrete And Ceramics

    By J. C. Wiltshire

    Both ferromanganese crusts and nodules present potential processors with enormous volumes of tailings of dubious environmental character: most processing scenarios fail to utilize the uneconomic manga

    Jan 1, 1991

  • IMMS
    Assessing the Sustainability of Manganese Nodule Mining: A Life-Cycle Based Comparison of Commercial Mining Scenarios in the German License Areas in the CCZ

    By Andrea Koschinsky, Luise Heinrich, Stefan Gößling-Reisemann

    "Germany, like several other countries, has entered a contract with the International Seabed Authority (ISA) to explore the prospects of commercial manganese nodule mining in the Clarion-Clipperton Zo

    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
    Exploring The Third Dimension Of An Active Seafloor Hydrothermal System Hosted By Felsic Volcanic Rocks: ODP Leg 193 At PACMANUS, Papua New Guinea

    By Raymond A. Binns

    In this first sub-seafloor examination of an active hydrothermal system hosted by felsic volcanic rocks at a convergent plate margin, we drilled 13 holes altogether, achieving deep cored penetrations

    Jan 1, 2002

  • IMMS
    Permeability and Fault Control on Seafloor Massive Sulfide Deposits in the Lucky Strike Hydrothermal Field (Mid-Atlantic Ridge) Using Leapfrog Geo Software

    By Dennis Sánchez Mora, John Jamieson

    INTRODUCTION Work by Humphris et al., (2002); Ondréas et al., (2009); Barreyre et al., (2012); and Escartín et al., (2015) has identified active and inactive hydrothermal sites along the Lucky Strike

    Jan 1, 2018