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  • IMMS
    Fe-Mn Nodules From The Finnish Bay (Baltic Sea): Exploration And Exploitation Experience

    By Georgy Cherkashov

    Shallow-water formation of marine ferromanganese nodules as well as their deep-water analogues is found throughout the global ocean. The Baltic Sea is a key province for the shallow-water type of mari

    Sep 14, 2011

  • 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
    Sand Mining On U.S. Continental Shelves: Exploration And Exploitation For Shore Protection And Environmental Restoration - Introduction

    By Charles W. Finkl

    Coastal and marine aggregate (sand and gravel) mining on US continental shelves is a major activity that supplies industrial and commercial demands for these raw materials. Because Pacific, Atlantic,

    Jan 1, 2005

  • IMMS
    Regional-Scale Mapping Of U.S. Continental Margin Sedimentary Environments: Tools For Research, Seafloor Management And Aggregate Resource Assessments

    By S. Jeffress Williams

    Continental shelf margins are dynamic sedimentary environments that contain important benthic habitats and support many functions such as navigation, national defense, cables, pipelines, trawling, and

    Jan 1, 2004

  • IMMS
    Deep Seabed Resource Potential

    By G. A. Gross

    Technological development in the last two decades has provided access to the deep seabed and opened a new frontier for exploration. Interest in Canada has focused mainly on study of metallic mineral o

    Jan 1, 1985

  • IMMS
    Devonian Fe-Mn Nodules of the Ural Paleoocean - Introduction

    By N. R. Ayupova

    Several metallogenic zones including Sakmara, Magnitogorsk, and East-Ural zones were revealed in the Ural fold belt (Fig. 1). These zones are considered to be the paleogeodinamic sectors corresponding

    Jan 1, 2010

  • 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
    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
    Offshore Construction Technology - Opportunities And Applications In Marine Mining

    By James E. Dailey

    Marine mining is driven by profitability, and profitability is driven in turn by people and equipment that can work productively and safely at sea. Design challenges faced by the marine mining communi

    Jan 1, 1989

  • IMMS
    Sustainability Aspects in Deep-Seabed Mining of Polymetallic Nodules

    By Ning Yang, Sup Hong

    INTRODUCTION Metal components contained in deep-seabed mineral resources are being highlighted as “energy metals”, which are widely utilized in the entire fields of energy: harvesting and generation,

    Jan 1, 2018

  • IMMS
    Halogens Geochemistry in Ferromanganese Crusts – Does The Electrochemical Model Apply?

    By Kira Mizell, James Hein

    "INTRODUCTIONThe majority of studies on the genesis of ferromanganese crusts focus on the adsorption and accumulation of metals, and therefore cations, especially those of economic interest. From thes

    Jan 1, 2017

  • IMMS
    Assessment Of The Rehabilitation Of The Sea-Bed Following Marine Aggregate Dredging

    By Siân E. Boyd

    Studies of benthic recolonization in the aftermath of marine aggregate dredging in the U.K. and elsewhere are limited and are largely confined to experimental circumstances. Investigations of the phy

    Jan 1, 2002

  • IMMS
    Model of CCZ Geological Evolution and Nodules Potential Formation

    By Valery M. Yubko

    "The conceptual basis of the developed model is based on the ideas that evolution of geological-geomorphological structure of the CCZ is controlled by four types of geologic factors: geodynamic, sedim

    Jan 1, 2017

  • IMMS
    Hydrothermal Fields In Oceanic Fracture Zone Settings: An Example From The Blanco F.Z., Northeast Pacific

    By James R. Hein

    Low- to intermediate-temperature, diffuse-flow hydrothermal fields and associated mineral precipitates have been found at many locations along oceanic spreading centers, back-arc basin spreading axes,

    Jan 1, 2001

  • IMMS
    Distribution And Formation Of Placers On The Continental Shelves Of Russia

    By A. Ivanova

    The continental shelves occupy a vast area of Russia and contain complexes of commercial placer minerals. Of prime importance are Cenozoic placers of valuable minerals including gold, cassiterite, dia

    Jan 1, 2004

  • IMMS
    World’s First Lifting Test for Polymetallic Sulphides in the EEZ of Japan (17085510-97de-41de-92f7-614b0ddcb5d0)

    By Masaomi Kurihara, Seiya Kawano, Norihiro Yamaji, Satoshi Shiokawa, Nobuyuki Okamoto, Hironobu Sakurai

    Seafloor polymetallic sulphides are distributed in the EEZ of Japan, including substantial deposits in the Okinawa Trough and Izu-Bonin back-arc basin. In this new frontier, the successful development

    Jan 1, 2018

  • IMMS
    World’s First Lifting Test for Polymetallic Sulphides in the EEZ of Japan

    By Masaomi Kurihara, Seiya Kawano, Norihiro Yamajim, Satoshi Shiokawa, Nobuyuki Okamoto, Hironobu Sakurai

    Seafloor polymetallic sulphides are distributed in the EEZ of Japan, including substantial deposits in the Okinawa Trough and Izu-Bonin back-arc basin. In this new frontier, the successful development

    Jan 1, 2018

  • IMMS
    Control And Monitoring Of Hydraulic System Of Underwater Mining Robot

    By Tae-kyeong Yeu

    KIOST has developed the pilot mining robot, named MineRo ?? from early-2011 to mid- 2012. The robot consists of two unit-modules having an identical mechanical structure and hydraulic system. One unit

    Sep 14, 2011

  • IMMS
    Electric Motor Drive Systems for Mobile Mining Equipment for Deep-Sea Mining to Maximize the Productivity

    By Roy Nilsen, Aravinda Perera

    With the exponential growth of demand for minerals and need for diversification of supply channels, deep-sea mining is rapidly becoming inevitable. Productivity of underwater mining technology is sali

    Jan 1, 2018

  • IMMS
    Eyes in the Deep – How Autonomous Underwater Vehicles Can Support & Enhance Deep Sea Mining Operations

    By Stephen Hall

    Introduction Marine Autonomous Systems are making rapid progress from their early years as research tools for university departments & government institutes into having a growing number of real-world

    Jan 1, 2018