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  • 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
    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
    Hawaiian Mineral Deposits And Extremophiles On Loihi Submarine Volcano: A New Resource

    By Alexander Malahoff

    The most exciting frontier in Ocean Technology is represented by a new class of Marine Bioproducts, the source of which lies in marine microorganisms. The microorganisms include microalgae, bacteria

    Jan 1, 2000

  • IMMS
    Fundamental Study Of UV-Fluorescence Sensing System For Seafloor Massive Sulfides ? Introduction

    By Tetsuo Yamazaki

    Seafloor massive sulfides (SMS) in the western Pacific have received much attention as resources for gold, silver, copper, zinc, and lead (Lenoble, 2000). Since the end of the 1980s, SMS have been fou

    Jan 1, 2011

  • 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
    The Usage Of A New German Deep-Sea ROV (QUEST 5) And A Mobile Drilling System (BGS Rockdrill) For The Exploration Of Deep-Sea Mineral Deposits

    By Thomas Kuhn

    The detailed investigation of both active and inactive submarine hydrothermal systems has gained tremendous progress during the last decades because of the increasing usage of remotely operated vehicl

    Jan 1, 2003

  • IMMS
    Generic Mechanisms Affecting the Post-Formation Preservation of Seafloor Massive Sulphide Deposits: Preliminary Results from the TAG Field

    By Sven Petersen, Iain J. Stobbs, Bramley J. Murton, Paul A. J. Lusty

    "INTRODUCTIONIt is widely thought that seafloor massive sulphide (SMS) deposits, the modern analogue of volcanogenic massive sulphide (VMS) deposits, present a potential global resource for base (Cu,

    Jan 1, 2017

  • IMMS
    Detailed Magnetic And Morphological Investigations Of The East Manus Basin And Planet Deep Section Of The New Britain Trench, Papua New Guinea

    By Sang-Mook Lee

    The Manus back-arc basin behind the New Britain Trench is one of the major sites of active seafloor hydrothermal vent-fields which are considered to be modern-day analogue of felsic volcanic-hosted po

    Jan 1, 2000

  • IMMS
    Deep Sea Minerals, Inc.

    By James M. Cairns

    Deep Sea Minerals Inc. (DSM) is a high technology marine minerals and biotechnology corporation. The corporation is currently engaged in a worldwide leasing program to acquire exclusive rights in spec

    Jan 1, 2000

  • 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

  • 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
    Contribution Of Seafloor Research To Land-Based VMS Exploration

    By Gérald Riverin

    Over the past century, exploration methods for volcanogenic massive sulphide deposits have evolved in response to a decreasing number of discoveries made by traditional surface prospecting and by grou

    Jan 1, 1998

  • IMMS
    A Review Of Radiometric Dating Methods Used Inassessing Submarine Volcanic Arc-Related Mineraldeposits

    By Robert G. Ditchburn

    Msjflkcisokng During the past sixteen years, GNS Science has developed a number of radiometric methods for dating massive sulfide samples from submarine arc and back-arc volcanoes. This has improved o

    Sep 14, 2011

  • IMMS
    Extinct Seafloor Massive Sulphide Mounds from the TAG Hydrothermal Area, Mid-Atlantic Ridge - Insights into Geological Processes after Cease of Hydrothermal Venting

    By Sven Petersen, Berit Lehrmann, Bramley J. Murton, Paul A. J. Lusty

    "INTRODUCTIONToday’s metal mining focusses on land based ore deposits which only consider one third of the Earth’s surface. Through an increasing global demand of strategic metals used in the electron

    Jan 1, 2017

  • IMMS
    The Mesoscale Distribution Of Zooplankton Community In The Northeastern Pacific

    By Jung-Hoon Kang

    Present study was stemmed from the survey associated with deep-sea mining in the KODOS area between Clarion Fracture Zone and Clipperton Fracture Zone located in the North Pacific Ocean. The study

    Jan 1, 2003

  • IMMS
    How to Identify Extinct Seafloor Massive Sulphides by Using OBS Seismic Data – A Case Study from the Blue Mining Project at the TAG Hydrothermal Field

    By Mark Vardy, Kasia-Leigh Chidlow, Tim Minshull, Jeorg Bialas, Sven Peterson, Bramley Murton, Alba Gil

    Since the discovery of the first black smoker on the East Pacific Rise in 1977 (Francheteau, et al., 1979), the hydrothermal vents, now called seafloor massive sulphides (SMS) deposits, have generated

    Jan 1, 2017

  • IMMS
    Conceptual Methods Of Deep Sea Mineral Exploration In The Central Pacific - Introduction

    By David S. Cronan

    The traditional method of deep sea manganese nodule exploration is to conduct grid survey and sampling on successively finer scales until a suitable deposit has been delineated. Clearly this is both

    Jan 1, 2003

  • IMMS
    Melt Inclusions in Brothers Dacite Reveal Metal Transporting Mechanisms

    By Ian J. Graham

    Brothers volcano, in the southern Kermadec Arc, is host to two hydrothermal vent fields with very different geology, permeability, vent fluid compositions and mineralogy (see de Ronde et al. and Ditch

    Jan 1, 2010

  • IMMS
    Tellurium-Rich Ferromanganese Crusts

    By James R. Hein

    Ferromanganese oxyhydroxide crusts (Fe-Mn crusts) precipitate out of cold ambient seawater onto hard-rock surfaces at water depths of about 600-4000 m throughout the ocean basins. Fe-Mn crusts concen

    Jan 1, 2000

  • IMMS
    Marine Mining And Minerals Exploration: The New Role For Academe

    By J. Robert Moore

    Introductory remarks will be made by the speaker, chiefly on recent and current developments in the industrial, agency and academic sectors that relate to the status of marine mining and mineral explo

    Jan 1, 1986