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  • 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
    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
    Plate Tectonic Reorganizations: Possible Controls On Massive Sulfide Deposition

    By A. M. Olivarez

    The elucidation of the theory of plate tectonics has provided a conceptual framework for understanding the formation and distribution of different types of ore deposits. For example, we now recognize

    Jan 1, 1988

  • IMMS
    Concentration of Pt, Au and Ag in Ferromanganese Deposits from the N-W Pacific: Preliminary Results

    By V. V. Ivanov, A. I. Khanchuk, E. V. Mikhailik, M. G. Blokhin, P. E. Mikhailik

    At present, marine ferromanganese crusts of seamounts are of great interest as a source of high-tech metals. The metals most enriched in these deposits are essential for a wide variety of green-tech,

    Jan 1, 2018

  • IMMS
    Upscaling towards Deep-Sea Mining by Vertical Transport Experiments over 130 meter.

    By S. C. W. de Jong, E. de Hoog, J. M. van Wijk, S. J. Dasselaar

    Introduction Technology development for sustainable, safe, reliable and efficient mining of polymetallic nodules in the deep seas requires careful design, thorough understanding and integrated testing

    Jan 1, 2018

  • IMMS
    Obtaining Approval For Deep Water Seafloor Mineral Extraction: The Solwara 1 Example

    By David Gwyther

    There is increasing recognition that in order for a development project to proceed successfully, it must first obtain a ?social licence to operate? from concerned stakeholders. Obtaining this ?licenc

    Jan 1, 2011

  • 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
    Hydrogenetic Growth of Ferromanganese Crusts: Which Processes Cause The Heteroepitaxial Intergrowth of the Fe- and Mn-Phases?

    By Peter E. Halbach, Andreas Jahn

    Co-rich hydrogenetic ferromanganese crusts are typical marine interface products of growth processes taking place on sediment-free substrate rocks on the seafloor. They grow very slowly and preferenti

    Jan 1, 2017

  • IMMS
    Self-Cleaning Acoustic/Screen Filter System

    By J. Robert Woolsey

    A unique concept for a self-cleaning filter system has been designed and constructed which utilizes acoustic energy, coupled hydraulically with a subject liquid media, and a fine mesh screen to perfor

    Jan 1, 1994

  • 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
    Seamount-Scale Controls on Ferromanganese Crust Geochemistry: Tropic Seamount, NE Atlantic

    By C. R. Pearce, B. Murton, S. Howarth, P. Lusty

    "With the expansion of “green” energy technologies, the demand for the critical raw materials required to sustain this growth is increasing. Many E-tech elements, including tellurium (Te) and rare ear

    Jan 1, 2017

  • IMMS
    A Study on Processing of Seafloor Massive Sulphides from the Loki’s Castle Area at the Arctic Mid-Ocean Ridge

    By Kurt Aasly, Przemyslaw B. Kowalczuk, Rolf Arne Kleiv

    Seafloor massive sulphides (SMS) can serve as a potential resource of metals such as Cu, Zn, Au and Ag. SMS rock samples from the Loki’s Castle area at the Arctic Mid-Ocean Ridge are comprised of sulp

    Jan 1, 2018

  • IMMS
    Ultra-Fast Segmentation And Quantification Of Polymetallic Nodule Coverage In High-Resolution Digital Images

    By T. Schoening

    The exploration of the seafloor regarding the abundances of poly-metallic nodules has received growing attention recently. Image-based exploration using cameraequipped deep-sea observation systems has

    Sep 14, 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
    Road Map To Successful Commercial Deep Ocean Mining

    By John Halkyard

    Deep ocean mining is experiencing a rebirth following many years of low levels of activity. Large scale mining is being projected as just over the horizon. A lot has been made of the advances in deep

    Jan 1, 2011

  • IMMS
    A Geologic Survey Of The Near-Shore Regions Around White Island, New Zealand; Sidescan Imagery, Rock And Gas Samples From The 1995 MMTC-WIS Survey.

    By Gregory J. Kurras

    In 1995 the Marine Minerals Technology Center (MMTC) of the University of Hawaii conducted a sidescan sonar survey and sampling expedition of the submarine geology and hydrothermal systems surrounding

    Jan 1, 2011

  • IMMS
    The Definition of Morphotectonic Domains in the Clarion- Clipperton Zone (CCZ): A Step Closer to Understanding the Controls behind Nodule Mineralisation?

    By John Parianos, Simon Richards

    SUMMARY The Clarion Clipperton Zone (CCZ) hosts the most valuable deposit of polymetallic nodules yet discovered. Understanding the geology of this deposit is key to its effective exploration and mini

    Jan 1, 2018

  • IMMS
    Vertical Hydraulic Transport For Deep Sea Mining Applications - Introduction

    By Paul M. Vercruijsse

    Deep sea mining operations by nature are performed (or planned) in challenging environments. Another typifying characteristic of deep sea mining operations is the relatively high investment cost. This

    Jan 1, 2011

  • IMMS
    Why Are Some Seafloor Polymetallic Sulfide Sites Particularly Rich In Gold?

    By Raymond A. Binns

    Exploration for undersea polymetallic sulfide mineral resources with high economic potential would be more effective given an ability to predict sites with particularly high gold contents (averaging s

    Jan 1, 2005

  • IMMS
    The Benthic Impact Experiment (BIE): A Study Of Environmental Impacts Of Manganese-Nodule Mining On The Abyssal Seafloor

    By Dwight D. Trueblood

    The Benthic Impact Experiment (BIE) is designed to address the effects of sediment redeposition prior to the commencement of commercial mining. The experiment is being conducted in collaboration with

    Jan 1, 1992