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  • IMMS
    Sulphuric Acid Pressure Leaching Of The Matte Prepared From Deep-Sea Manganese Nodules

    By Kyung-Ho Park

    The smelting leaching process is known as one of the most favorite methods for the processing of deep-sea manganese nodules because of its smaller environmental impact and easiness of manganese recove

    Jan 1, 2003

  • IMMS
    Geological Limitation on Distribution of Manganese Nodules in the South China Sea

    By Huaiyang Zhou

    It has been long known that manganese nodules occur more or less in some part of marginal seas in West Pacific Ocean. On the other hand, it is difficult to understand their distribution and the genesi

    Sep 14, 2011

  • IMMS
    Base And Precious Metal Resources In Seafloor Polymetallic Sulfides

    By Mark D. Hannington

    Seafloor polymetallic sulfides have been found in diverse volcanic and tectonic settings on the ocean floor at water depths ranging from 3700 meters to <1500 meters. More than 100 occurrences of hydro

    Jan 1, 1994

  • IMMS
    Critical Metals in Manganese Nodules from the Cook Islands EEZ

    By James R. Hein

    Manganese nodules from the Cook Islands (CI) Exclusive Economic Zone (EEZ) are compositionally different from other nodule fields. CI nodules have relatively high cobalt concentrations and low nickel,

    Sep 14, 2011

  • IMMS
    Elemental Correlations And Distributions Of KODOS Ferromanganese Nodules, Focused On SiO2 And CaO

    Although Mn, Fe, Cu, Ni, and Co have been the main interests since the ferromanganese nodules had been found, the other major components such as Si and Ca might be very important controlling factors i

    Jan 1, 2004

  • IMMS
    Epithermal Ore Formation At The Neovolcanic Komba Ridge In The Eastern Flores Sea, Indonesia

    By Peter Halbach

    Within the frame of the German-Indonesian cooperative Bandamin research project two short cruises (7 station days each) were carried out which led to the Flores-Banda basin located north of the active

    Jan 1, 2004

  • IMMS
    Mineral Processing Of Seafloor Hydrothermal Deposit Samples -Treatment Using Gravity Separation And Flotation Methods - Introduction

    By Mayumi Ito

    Seafloor hydrothermal deposits are found worldwide at 700 to 3,600 meters below sea level [1] and contain base and precious metals like Cu, Pb, Zn, Au, and Ag. Some deposits were found in the Japanese

    Jan 1, 2011

  • IMMS
    Design of a Subsea Vehicle Propulsion System for Soft Sediments

    By Boris Broere, Wiebe Boomsma, Pieter Lucieer

    "The Blue Nodules project started February 2016 as part of the EU Horizon 2020 subsidy program. Blue Nodules aims at developing a sustainable deep sea mining system for the harvesting of polymetallic

    Jan 1, 2017

  • IMMS
    Japanese Deep Sea Impact Experiment (JET) And Its Preliminary Results

    By Katsuya Tsurusaki

    Commercial mining of manganese nodules is expected to begin within the next 20 to 50 years in large areas of abyssal sea floor in the Pacific Ocean. While deep sea mining is expected to realize signif

    Jan 1, 1996

  • IMMS
    Seafloor Occurrence And Growth Stages Of KODOS Ferromanganese Nodules

    The seafloor occurrences of KODOS ferromanganese nodules can be classified into four facies based on the morphological types of nodules recovered and seafloor photographs. Facies A, B, and C are relat

    Jan 1, 2005

  • IMMS
    Trace Elements In Massive Sulfides From The Semenov-2 Hydrothermal Field, 13º31´ N, Central Atlantic: ICP-MS And LA-ICP-MS Data

    By Irina Melekestseva

    The Cu-Zn massive sulfides from the basalt-hosted Semenov-2 hydrothermal field (13°31.13´ N, 44°59.03´ W, MAR) are enriched in Au (22?188 ppm) and Ag (127?1787 ppm) [Ivanov et al., 2008] and elevated

    Sep 14, 2011

  • IMMS
    Thrown in at the Deep End: Modelling Sediment Plumes 1000 m under Water

    By Jeremy Spearman, Alan Cooper, Mark Lee, Jon Taylor, Michael Turnbull, Neil Crossouard, Bramley Murton

    "SUMMARYSeamounts are underwater mountains caused by volcanic activity. They are of great oceanographic interest because of their local and basin-scale influence over ocean systems, their often unique

    Jan 1, 2017

  • IMMS
    InterRidge Statement of Commitment to Responsible Research Practices at Deep-sea Hydrothermal Vents

    By Colin Devey

    As marine research scientists we especially appreciate the uniqueness and complexity of the deep-sea hydrothermal vent fauna and environments, and are particularly interested in preserving vents for

    Aug 24, 2006

  • IMMS
    Integrating GIS With Image Database And Its Role In The Development Of Marine Minerals

    By Jun Lu

    Compared with land mineral resources investigation, as well known, it is more important for marine geologists to get image data (e.g. photographs, video tapes and various charts) because they are ofte

    Jan 1, 2000

  • IMMS
    A Self-Regulatory Model For The Management Of The Environment And Public Issues In Marine Mining

    By Julian Malnic

    The emerging marine minerals exploration and mining industry is currently focused mainly on the technical elements for its success such as developing exploration and mining technologies. However, in o

    Jan 1, 2000

  • 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
    Not Your Father's AUV: New Technologies That Will Transform Deep Sea Operations

    By Carl L. Kaiser

    This abstract discusses selected recent technology developments at the Deep Submergence Lab at the Woods Hole Oceanographic Institution aimed at fundamentally changing the nature and scope of AUV oper

    Sep 14, 2011

  • IMMS
    Autonomous Robotic Sea-Floor Infrastructure for Bentho-Pelagic Monitoring (ARIM)

    By Olav Rune Godø

    We present a science-based infrastructure for continuous online monitoring of the ocean interior including benthic, pelagic and the demersal habitats. It will reduce expensive ship based monitoring co

    Jan 1, 2018

  • IMMS
    Dating of Iron Oxide Crusts in the Study of Submarine Hydrothermal Events and Mineral Deposition ? Introduction

    By Robert G. Ditchburn

    The NW caldera hydrothermal vent field at Brothers volcano, of the Kermadec-Tonga arc, has associated massive sulfide mineralization. This includes an abundance of black smoker chimneys that contain s

    Jan 1, 2010

  • IMMS
    Hydrogenetic Fe-Mn Crusts From The Atlantic And Pacific Oceans: Geological Evolution And Conditions Of Formation (87b4258a-f4bd-41f2-89e2-6fee198dbc10)

    By Irina A. Pulyaeva

    Hydrogenetic Fe-Mn crusts are ubiquitous in the ocean basins and play an important role in marine mineral-deposit research because of their widespread occurrence and high concentrations of valuable an

    Jan 1, 2011