Search Documents

Search Again

Search Again

Refine Search

Publication Date
Clear

Refine Search

Publication Date
Clear
Organization
Organization
  • IMMS
    Monitoring the Dynamics of Gas Hydrate Deposits and Hydrothermal Discharge using the NEPTUNE Undersea Observatory Network

    By S. Kim Juniper

    Ocean observatory technologies permit uninterrupted, real-time observation of dynamic seafloor environments such as gas hydrate deposits and hydrothermal vent fields that are of both scientific and ec

    Sep 14, 2011

  • IMMS
    Comparative Tests Of Scott/C-CORE And Van Veen Sampler For Biological Appraisal Of Placer Deposits

    By William J. Scott

    In the last two years, C-CORE has developed a new seabed sampler directed specifically at obtaining samples from hard or compacted bottoms such as are typical of marine placer deposits. Samples are re

    Jan 1, 1994

  • IMMS
    Comparative Tests Of Scott/C-CORE And Van Veen Samplers For Biological Appraisal Of Placer Deposits

    By William J. Scott

    In the last two years, C-CORE has developed a new seabed sampler directed specifically at obtaining samples from hard or compacted bottoms such as are typical of marine placer deposits. Samples are re

    Jan 1, 1994

  • IMMS
    A New Concept Of Easy Pre-Site Survey Method Of Deep Sea Hydrothermal Deposits

    By Shinichi Takagawa

    The deep sea hydrothermal deposits are one of the most prospecting resources, and various works to develop these mines are now underway. There are also various methods for the pre-site survey of th

    Jan 1, 2011

  • IMMS
    Finding Femn Crusts: Growth, Structure, Texture and Geophysical Detection

    By Mark Vardy, Kate Dobson, Isobel Yeo, Paul Lusty, Bramley Murton

    In response to anthropogenic climate change, the way in which we use and generate energy is changing. To facilitate these developments, it is essential that we increase and diversify the supply of ‘E-

    Jan 1, 2017

  • IMMS
    Plumes of Deep-Sea Mining: What Do We Know?

    By Georgy Cherkashov, Livia Ermakova

    Active development of the exploration and further exploitation of deep-sea minerals requires special emphasis on the protection of the marine environment. The complexity of this subject lies in the fa

    Jan 1, 2018

  • IMMS
    Shallow Submarine Hydrothermal Systems along the Tonga- Kermadec Arc, SW-Pacific: Geological and Metallogenetic Characteristics and Variabilities

    By U. Schwarz-Schampera, P. Stoffers

    The main characteristics of the 2545 km Tonga-Kermadec subduction system are the subduction of the Pacific Plate and its sedimentary cover in the Tonga-Kermadec trench and the extension and rifting o

    Aug 24, 2006

  • IMMS
    Polymetallic Nodules as a Future Deep Sea Mineral Resource

    By U. Schwarz-Schampera, C. Rühlemann, H. -R. Kudrass

    Within 2006 BGR will conclude a contract with the UN International Seabed Authority (ISA) for the exploration of polymetallic nodules. The contract covers an area in the Pacific nodule belt between th

    Aug 24, 2006

  • IMMS
    Deep-Sea Mineral Potential in the South Pacific Waters – The Results of the 21-year Long-term Japan/SOPAC Cooperative Deep-Sea Mineral Resources Study Programme, 1985-2005

    By Nobuyuki Okamoto

    The 21-year long-term Japan-SOPAC Cooperative Deep-sea Mineral Resources Study Programme was completed in March 2006. The Programme, which commenced in 1985, has seen numerous marine research surve

    Sep 24, 2006

  • IMMS
    Gallium-rich Hydrothermal Ferromanganese Crusts from the Sea of Japan Underwater Volcanoes (67d4abee-1011-4718-ac2a-3ede4ab7d116)

    By P. Mikhailik

    Recently, characterized by fast development high- and nano-technology, demand for rare and trace metals has increased. One of such metals is gallium. Gallium compounds, mainly GaAs, are used in medici

    Jan 1, 2010

  • IMMS
    Geochemical Characteristics Of Deep-Sea Sediments From The NE Equatorial Pacific And Its Paleoceanographic Implications

    By Sung-Hyun Park

    Core sediment samples collected from the KODOS area of the Clarion-Clipperton Fracture Zone in the NE Equatorial Pacific were analyzed for chemical and mineralogical compositions to investigate the de

    Jan 1, 2003

  • IMMS
    Effects of Sedimentation from Deep-Sea Mining: A Benthic Disturbance Experiment off New Zealand.

    By Malcolm Clark, Robin K. H. Falconer

    There are a number of likely impacts from mining operations, but a key issue is uncertainty about the environmental effects of sediment plumes created by disturbance to the seafloor and discharge of p

    Jan 1, 2018

  • IMMS
    Upscaling towards Deep-Sea Mining by Vertical Transport Experiments over 130 meter.

    By S. C. W. de Jong, E. de Hoog, J. M. van Wijk, S. J. Dasselaar

    Introduction Technology development for sustainable, safe, reliable and efficient mining of polymetallic nodules in the deep seas requires careful design, thorough understanding and integrated testing

    Jan 1, 2018

  • IMMS
    Magmatic Fluids In Seafloor Volcanic Rocks: An Enriched Metal Source For 'Giant' Ore Deposits?

    By Kaihui Yang

    Volcanogenic massive sulfide deposits are generally considered to have been formed by hydrothermal fluids that leach ore metals out of footwall rocks. However, the necessity for a metal-rich magmatic

    Jan 1, 2011

  • IMMS
    Gallium-rich Hydrothermal Ferromanganese Crusts from the Sea of Japan Underwater Volcanoes

    By P. Mikhailik

    Recently, characterized by fast development high- and nano-technology, demand for rare and trace metals has increased. One of such metals is gallium. Gallium compounds, mainly GaAs, are used in medici

    Jan 1, 2010

  • IMMS
    Preliminary Report: The Third Marine Kuroko-type Deposit in the Area 200 km2 of a Major Kuroko Province in Japan

    By H. Shimoda, K. Tamaki, K. Iizasa, M. Watanabe, K. Okamura

    Modern Kuroko-type deposits occur in submarine calderas of island-arc fronts and back-arc rifts in Japan. They occur primarily on or adjacent to caldera boundary faults. Hydrothermal sulfides in the M

    Aug 24, 2006

  • IMMS
    Towards Operational Environmental Threshold Levels for Exploitation of Mineral Resources in the Deep Sea (71089290-180d-4f28-918b-1a970dec41b1)

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

    This paper describes 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
    Offshore Diamond Exploration In Australia

    By Ian Selby

    Recent offshore diamond exploration has been concentrated in the SW Joseph Bonaparte Gulf. I`IW Australia. Extensive high resolution seismic and sampling surveys have been carried out in Cambridge Gul

    Jan 1, 1998

  • IMMS
    Heavy-Mineral Resources Offshore Of The Southeast Atlantic Coast

    By Andrew E. Grosz

    The United States is dependent on foreign imports for about 80 percent of its ilmenite, about 60 percent of its rutile, and virtually all of its monazite. Nearshore marine sand deposits and beach-comp

    Jan 1, 1986

  • IMMS
    Precious Metals In Seafloor Hydrothermal Deposits

    By R. Moss

    Gold and silver are important byproducts of mining volcanogenic massive sulfide (VMS) deposits. Both metals occur in VMS deposits ranging in age from the Archean to the currently forming massive sulfi

    Jan 1, 2011