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  • IMMS
    Alteration In The Nodule Coverage Due To Biogenic Disturbance In The IOM Exploration Area: Some Environmental Concerns

    By Valcana Stoyanova

    Deep-sea mining of polymetallic nodules are expected to produce serious impact on benthic ecosystem due to removal of nodules, sediments and associated fauna by means of collector, and subsequently, b

    Jan 1, 2011

  • IMMS
    Mineralogy of Polymetallic Nodules in the Central Mexican Pacific (b0fead6b-fb77-4585-9d75-45915ccf5818)

    By Mayumy Amparo Cabrera-Ramírez

    Polymetallic nodules are a widespread resource in the Pacific Ocean, particularly in the areas of Clarion-Clipperton (Cronan, 2000). The most abundant mineral phases are forme d by iron and manganese

    Sep 14, 2011

  • IMMS
    Seafloor Massive Sulfides And Oceanic Core Complexes At The Slow-Spreading Ridges

    By G. Cherkashov

    The geodiversity of seafloor massive sulfides (SMS) deposits at the slow- and ultra-slow spreading ridges is of great variety (Fouquet et al., 2010). Tectonics and magmatism are the two principal fact

    Jan 1, 2011

  • IMMS
    Simulation of Two-Phase Flow in Airlift Pump Using 1D Two-Fluid Model

    By Ivar Eskerud Smith, Ole Jørgen Nydal, Niranjan Reddy Challabotla, Svein Sævik

    INTRODUCTION Airlift pumping, utilize compressed air that is injected at the bottom of a vertical pipe submerged in the water, reduces the mixture density inside the pipe and lifts the liquid or mixtu

    Jan 1, 2018

  • 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
    6000 Meter Submersibles MIR I And II: New Opportunities For Use In Marine Exploration

    By Igor E. Mikhaltsev

    The goal of investigation of the midwaters and of the bottom of the world - ocean versus technological possibilities. Manned vehicles and maximum depth decision. The methods of solving of the problem.

    Jan 1, 1988

  • IMMS
    Impact Estimation Of Methane Hydrate Utilization On Atmospheric Carbon Emissions By Using Mass Balance Eco-Model

    By Tetsuo Yamazaki

    Natural methane hydrate has been scientifically studied as a global carbon reservoir. However, in Japan, it?s potential as an energy resource has been industrially highlighted, because there are few

    Jan 1, 2004

  • IMMS
    Methods of Manganese Nodule Exploration in the German License Area

    By Carsten Rühlemann

    Between 2008 and 2013, the German Federal Institute for Geosciences and Natural Resources (BGR) carried out five exploration cruises to the German license area in the eastern Pacific Nodule Belt. The

    Sep 14, 2011

  • IMMS
    Programmatic Activities In The U.S. Exclusive Economic Zone

    By Robert G. Paul

    President Reagan's Exclusive Economic Zone (EEZ) Proclamation of March 10, 1983, extended United States ocean jurisdiction 200 nautical miles offshore our coastal states and territories. The acco

    Jan 1, 1985

  • IMMS
    Dynamic Mineral Recrystallization – Implications for Sustainable Trace Metal Recovery from Deep-Sea Ferromanganese Deposits

    By Tobias Hens, Andrew Frierdich, Barbara Etschmann, Joël Brugger, Barrie Bolton

    "Ferromanganese (Fe-Mn) nodules and crusts are prime targets for future deep-sea mining ventures due to their unusual enrichment of critical metals, such as Ni, Co, Cu, Ti, Te, Zr, Hf, Nb, Y, and REE.

    Jan 1, 2017

  • IMMS
    Cold Ocean Placers: Polar Storms, Interstadial Littorals And Crustal Adjustments

    By Michael W. Milner

    Cold Ocean Placers: Polar storms, interstadial littorals and crustal adjustments. Polar storms with consistent strong winds in the Southern, Antarctic Ocean are responsible for placer deposits on

    Jan 1, 1995

  • IMMS
    Comparative Investigations On Submarine Hydrothermal Mineralisation In The S.W. Pacific And Eastern Caribbean

    By D. Cronan

    Both the S.W. Pacific and Caribbean island arcs are host to submarine hydrothermal mineral deposits, the former more so than the latter. In the S.W. Pacific, the whole gamut of such deposits occurs o

    Jan 1, 2002

  • IMMS
    Chimney Massive Sulfides from the Vienna Woods Deposit (Bismarck Sea, PNG): Mineral Zonation and Geochemical Gradients

    By Janine Lahr, Peter E. Halbach

    The Manus Spreading Ridge is located within the EEZ of Papua New Guinea and lies in the Manus Basin ENE of the PNG Island and N of the Island New Britain. The divergent backarc spreading system is cau

    Sep 24, 2006

  • IMMS
    The GIS Model of the Fe-Mn Crust Origin on the Seamounts from the Pacific Ocean Magellan Seamounts

    By H. I. Chesalova, M. Ye. Melnikov, A. M. Asavin

    The discovery of iron-manganese ores on the surface of underwater mountains was made more than a half century ago. During this time the basic ideas about the thermodynamics of the processes of hydroch

    Sep 24, 2006

  • IMMS
    Chemical And Mineralogical Form Of Platinum In Cobalt-Rich Ferromanganese Crusts

    By Akira Usui

    Platinum is one of the most rare elements in the earth?s crust, but it is significantly enriched in some hydrogenetic ferromanganese crusts in the ocean. The element is essential to the electric indus

    Jan 1, 2005

  • IMMS
    Paleochemical Clues To Ancient Metalliferous Sediment Deposits: The Chinook Trough Hydrothermal Sequence

    By Gerald R. Dickens

    Massive sulfide ores and Fe-Mn oxyhydroxide precipitates represent two extremes of a spatial continuum of hydrothermal deposition along oceanic ridges. Elemental variations across this continuum are o

    Jan 1, 1994

  • IMMS
    Simulation And Calculation Of System Hydraulic Lifting Of Mineral Coarse Solid Particles From Seabed To The Water Surface

    By V. Alexandrov

    This paper presents the results of theoretical investigations of the energy requirements of the hydraulic lifting of mined materials from the seabed to the sea surface in the deep-sea mining of solid

    Jan 1, 2005

  • IMMS
    Microtexture Mineral Analyses – A Preparatory Stage in SMS Mineral Processing

    By Bjørn Eske Sørensen, Kristian Drivenes, Przemyslaw Kowalczuk, Kurt Aasly, Gavyn Rollinson, Ben Snook

    Efficient and successful mineral processing is dependent on detailed knowledge of the materials and minerals that are to be separated and concentrated. Common bulk methodologies such as XRD and XRF ar

    Jan 1, 2018

  • IMMS
    The Initial Spreading of Turbidity Plumes – Dedicated Laboratory Experiments for Model Validation

    By Frans van Grunsven, Cees van Rhee, Geert Keetels

    One of the obstacles during the initial phases of project development is the assessment of the environmental impact. Mining residue, consisting of fine seafloor sediments, are to be discharged subsea

    Jan 1, 2018

  • IMMS
    Ecosystem-Based Management of the Deep Ocean: DOSI (Deep-Ocean Stewardship Initiative) Guidance for Seabed Mining

    By Maria Baker, Kristina Gjerde, Lisa Levin, Verena Tunnicliffe, Lenaick Menot, Rachel Boschen

    Deep-sea mining is rapidly approaching the test-mining phase to prepare for commercial mining in multiple oceans, both in areas within and beyond national jurisdiction. The first test-mining operation

    Jan 1, 2017