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  • IMMS
    Towards an Improved Nodule Resource Estimation and Classification Using Hard and Soft Data

    By Steinar L. Ellefmo, Thomas Kuhn

    The deep-sea ocean floor offers a great potential for mineral resources. The evaluation of these resources is both time consuming and costly and require as any resource evaluation data; geodata. The c

    Jan 1, 2018

  • IMMS
    Mineral Phases and Element Associations of Ferromanganese Crusts, Amerasia Basin Arctic Ocean, Based on Sequential Leaching

    By Natalia Konstantinova, Kira Mizell, James R. Hein, Georgy Cherkashov, Amy Gartman, Pavel Mikhailik

    INTRODUCTION Ferromanganese (FeMn) crusts from Mendeleev Ridge, Chukchi Borderland, and Alpha Ridge, in the Amerasia Basin, Arctic Ocean, are similar based on morphology and chemical composition. The

    Jan 1, 2018

  • IMMS
    Preliminary Determinations Of The U.S. Continental And Territorial Shelves Based On Law Of The Sea (Article 76) Provisions

    By Roger Amato

    The 1982 United Nations Convention on the Low of the Sea includes provisions under Article 76 for extending a coastal State's jurisdiction beyond the 200-nautical-mile (nm) Exclusive Economic Zon

    Jan 1, 1996

  • IMMS
    Metal Mobilization in Hydrothermal Sediments (84725873-4fd0-4e12-bde1-d84f8b2f15ba)

    By Sofia Martins, Anna Lichtschlag, Sven Petersen, Fernando Barriga, Bramley Murton, Adeline Dutrieux

    "Sediments in the vicinity of the hydrothermal seafloor massive sulphide (SMS) mounds are characterized by high concentration of metallic particles. They result from a long process of weathering of th

    Jan 1, 2017

  • IMMS
    Marine Protected Areas within the Clarion-Clipperton Zone

    By Charles L. Morgan

    "In 2012 the International Seabed Authority (ISA) established nine “Areas of Particular Environmental Interest” (APEIs) for consideration as future Marine Protected Areas to help preserve the biodiver

    Jan 1, 2017

  • IMMS
    Risks In Marine Diamond Mining - Lessons From The Past And Present

    By Richard H. T. Garnett

    Marine mining on the continental shelf was first attempted in 1900 for gold off the beaches of Nome, Alaska. Attempts continued until 1990 with cutter-suction, airlift and bucket-ladder dredges. Off

    Jan 1, 1998

  • IMMS
    Pilot Mining Robot for Polymetallic Nodules and Pre-Pilot Mining Tests

    By Sup Hong

    A pilot mining robot, named MineRo-II, has been developed by KIOST during 2011-2012. The pilot scale was defined as 1/5 of the commercial mining capacity, 1.5 million dry-tons of nodules per year. The

    Sep 14, 2011

  • 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
    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
    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 Modern Massive Sulfide Deposits In The North Fiji Basin (NFB): Results From The SO 134 Cruise In August/September 1998

    By Peter Halbach

    The two HYFIFLUX cruises of the German RV SONNE (SO 99/1995 and SO 134/1998) were organized in the framework of a co-operation between several German universities and two European marine research part

    Jan 1, 2000

  • IMMS
    Exploring Submarine Volcanic Arcs From The Hydrothermal Plume Perspective

    By Gary J. Massoth

    Wherever hydrothermal fluids vent from the seafloor they will buoyantly rise (up to 100?s of meters) while mixing with seawater before attaining density equilibrium and dispersing laterally as neutral

    Jan 1, 2002

  • 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
    Marine And Coastal Heavy Mineral Placers: The Role Of Radiometric Techniques In Exploration, Assessment And Process Control

    By David G. Jones

    Radiometric surveys of the beach and nearshore zone of the Dutch Frisian Islands have identified sands enriched in heavy minerals. The areas of heavy mineral concentration have been mapped in detail u

    Jan 1, 1995

  • 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
    Can Recycling and the Circular Economy Render Seafloor Mining Unnecessary?

    By Fernando J. A. S. Barriga

    "Recent concerns over the availability of many mineral raw materials, and newly available technological developments, produced renewed interest in deep-sea mining. However, environmental concerns, wit

    Jan 1, 2017

  • IMMS
    The Characteristics of Plagioclase-Hosted Melt Inclusions from MORB in the Hydrothermal Anomaly Field, South Mid-Atlantic Ridge

    By Chuanshun Li, Haitao Zhang, Xuefa Shi, Quanshu Yan, Zhiwei Zhu

    In Expeditions 22 and 26 of China Ocean Survey (COS), Chinese and Russian scientists have Carried out a lot of work to search for hydrothermal sulfide in Southern Mid-Atlantic ridge (SMAR) 19°S, but c

    Jan 1, 2017

  • IMMS
    Finding Inactive And Sub-Seafloor Massive Sulfide Deposits In Deep Ocean Floors

    By Fernando J. A. S. Barriga

    Exploration for active seafloor hydrothermal vent fields has been highly successful, and more than 300 such fields have been discovered to date. Some will most probably be mined, given their high meta

    Jan 1, 2011

  • IMMS
    The Scientific, Engineering And Environmental Challenges Of Developing A Seafloor Massive Sulfide Project In The Western Pacific

    By David Heydon

    NAUTILUS MINERALS is a leader in the commercial exploration for and evaluation of seafloor massive sulfide (?SMS?) deposits. Nautilus has exploration licences covering 15,000 sq km of seafloor in Papu

    Jan 1, 2005

  • IMMS
    Physicochemical And Hydrodynamical Controls On Methane Bubble Dissolution Within The Hydrate Stability Field

    By G. Rehder

    The release of methane as free gas from the seafloor into the water-column well within the hydrate stability field is a natural process observed today in various ocean settings, such as the Cascadia m

    Jan 1, 2005