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  • IMMS
    Risks In Marine Diamond Mining - Lessons From The Past And Present

    By Richard H. T. Garnett

    Marine mining on the continental shelf was first attempted in 1900 for gold off the beaches of Nome, Alaska. Attempts continued until 1990 with cutter-suction, airlift and bucket-ladder dredges. Off

    Jan 1, 1998

  • IMMS
    AUV-Based Small Scale Quantitative Predictive Mapping of Mn-Nodules: Precondition for Ideal Mining Path Planning

    By Timm Schoening, Greinert. Jens, Iason –. Zois Gazis

    "Ferromanganese nodules are again of interest because of their high concentrations of Ni, Co, Cu as well as REE. With regards to an operational underwater mining industry, one of the main questions an

    Jan 1, 2017

  • 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
    Geoacoustic and Photo-Profiling as Remote Techniques of Choice in Nodule Field Exploration

    By Ivo Dreiseitl

    Bottom sediment sampling by means of a box corer, as a direct method of deep seabed exploration for polymetallic nodules, is the most comprehensive way to obtain various types of geological informatio

    Sep 14, 2011

  • IMMS
    Further Environmental Considerations For Marine Mining: Mine Closure And Environmental Terrorism

    By Derek Ellis

    There are two environmental issues which have only recently begun to need planning in detail for marine mining. One is the environmental consequences of mine closure; the other is environmental terror

    Jan 1, 2005

  • IMMS
    Seabed Mineral Deposits in European Seas: Metallogeny and Geological Potential for Strategic and Critical Raw Materials (MINDeSEA Project)

    By Henrik Schiellerup, Irene Zananiri, Johan Nyberg, Thomas Kuhn, Luis Somoza, Teresa Medialdea, Maria Judge, Pedro Ferreira, Gerry Stanley, Javier González

    The GeoERA Co-Fund action is a joint contribution of 48 national and regional Geological Survey Organisations from 33 European countries “Establishing the European Geological Surveys Research Area to

    Jan 1, 2018

  • 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
    Investigations Of Seafloor Hydrothermal Mineralisation In Volcanic Arcs, Back Arcs And Continental Shelf Settings In SW Pacific And SE Asia

    By Timothy F. McConachy

    Between April 2000 and April 2002, the Commonwealth Scientific and Industrial Research Organization (CSIRO) Division of Exploration and Mining has led 6 research expeditions totalling 160 days ship ti

    Jan 1, 2002

  • IMMS
    Market Analysis for Deep-Sea Mining Equipment

    By Felix Lehnen, Peter Kukla, Mirjam Rahn

    "Significant uncertainty is associated with predicting future trends in deep-sea mining projects, especially when attempting to assess markets for associated products such as ships and collectors. In

    Jan 1, 2017

  • IMMS
    Offshore Minerals For Flue Gas Desulfurization And By-Product Strategic Metals And Superphosphate Fertilizer

    By J. Robert Woolsey

    This paper provides certain Southeastern coal-burning utilities with an economic strategy for complying with the sulfur dioxide emission standards set firth by the Clean Air Act Amendments of 1990. Th

    Jan 1, 1992

  • IMMS
    Strategic R&D Proposal for Deep-sea Mineral Resources

    By Tetsuo Yamazaki

    Metal market prices rose drastically in 2006, and most broke historical records as shown in Figs. 1-4. This increase has been basically driven by economic growth in Asian countries, especially China.

    Sep 24, 2006

  • IMMS
    Jade Hydrothermal Field, Okinawa Trough: First Discovery Of Ag-And Au-Rich Massive Sulphides In An Intracontinental Backarc Basin

    By P. E. Halbach

    On June 26, 1988, the Jade Hydrothermal Field was discovered in the Okinawa Trough by the German RV Sonne. This research cruise has taken place within the scope of a German-Japanese cooperative projec

    Jan 1, 1989

  • IMMS
    Towards Operational Environmental Threshold Levels for Exploitation of Mineral Resources in the Deep Sea

    By Karsten Hagenah, Tor Jensen, Jens Laugesen, Øyvind Fjukmoen, Lucy Brooks

    This paper discusses operational environmental threshold levels for exploitation of mineral resources in the deep sea. Such criteria are needed to be able to monitor and control deep sea mining with r

    Jan 1, 2018

  • IMMS
    Physicochemical And Hydrodynamical Controls On Methane Bubble Dissolution Within The Hydrate Stability Field

    By G. Rehder

    The release of methane as free gas from the seafloor into the water-column well within the hydrate stability field is a natural process observed today in various ocean settings, such as the Cascadia m

    Jan 1, 2005

  • 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
    Manganese Crust Project, Hawaii - An Update Of Progress And Plans

    By Charles L. Morgan

    The Minerals Management Service of the U.S. Department of the Interior and the State of Hawaii Department of Planning and Economic Development are investigating the cobalt-rich ferromanganese oxide cr

    Jan 1, 1985

  • IMMS
    Economic, Environmental and Technical Considerations for Deep-sea Mining

    By Rahul Sharma

    Although, mining of minerals such as polymetallic nodules and sulphides from the deep sea floor has been delayed due to the combination of factors such as current availability of Cu, Ni, Co, Mn (and o

    Jan 1, 2010

  • IMMS
    Numerical Modelling Of The Sediment Transport Due To Deep Sea Mining

    By J. A. Jankowski

    The situation in the raw material market has brought into consideration the commercial exploitation of the mineral deposits on the deep sea bed and in particular the manganese nodules. They occur gene

    Jan 1, 1995

  • IMMS
    Borehole Mining Technology For Underwater Application

    By M. F. Dibble

    The technology available for mining of underwater mineral resources such as placers and phosphorite, typically occurring with variable amounts of overburden, has remained largely unchanged for decades

    Jan 1, 1986

  • IMMS
    Environmental Risk Studies In The Deep Sea Need International Cooperation

    By Hjalmar Thiel

    Since industry is progressing into the deep sea, marine scientists have expressed their concern about environmental disturbances which will be introduced by using the deep seafloor for mining metallif

    Jan 1, 1994