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  • IMMS
    IHC Merwede And DEME Join Forces To Develop Deep-Sea Mining Activities

    By Kris van Nijen

    IHC Merwede, a Dutch supplier of ships and equipment for dredging and mining activities, and DEME, a Belgian dredging and environmental services group, will enter into a joint venture for deep-sea min

    Jan 1, 2011

  • IMMS
    Potential Offshore Aggregate, Gulf Of Mexico

    By S. Jeffress Williams

    The topic area for this paper covers the United States portion of the northern Gulf of Mexico, extending from the Rio Grande delta east to the Florida peninsula. Declaration of an Exclusive Economic Z

    Jan 1, 1986

  • IMMS
    Geoacoustic and Photo-Profiling as Remote Techniques of Choice in Nodule Field Exploration

    By Ivo Dreiseitl

    Bottom sediment sampling by means of a box corer, as a direct method of deep seabed exploration for polymetallic nodules, is the most comprehensive way to obtain various types of geological informatio

    Sep 14, 2011

  • IMMS
    Pelagic Sediments Associated With Polymetallic Nodules In The Clarion Area Fracture Zone

    By Marlene Olivares Cruz

    The particles that make up the deep-sea sediments have two main sources: 1) those that are created in situ from dissolved components and 2) those that are washed into the ocean in solid phases from th

    Jan 1, 2011

  • IMMS
    Critical Metals in Manganese Nodules from the Cook Islands EEZ

    By James R. Hein

    Manganese nodules from the Cook Islands (CI) Exclusive Economic Zone (EEZ) are compositionally different from other nodule fields. CI nodules have relatively high cobalt concentrations and low nickel,

    Sep 14, 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
    Seabed Classification at Seafloor Hydrothermal Sulfides Fields Using Multi-beam Sonar

    By Tao Chunhui

    The seabed deposits type and distribution are very complex at the hydrothermal field. In this paper, we provided an approach to study the seabed deposits classification at the Precious Stone Mountain

    Sep 14, 2011

  • IMMS
    Hydrothermal Mineralization At Slow-Spreading Centers: The Atlantic Model (6baa95a4-914b-4150-8eae-8e16998a1da4)

    By Peter A. Rona

    Hydrothermal mineralization along slow-spreading oceanic ridges and rift -zones that comprise more than half the global length of the seafloor spreading center system is related to anomalous physical

    Jan 1, 1985

  • 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
    Trace Elements In Massive Sulfides From The Semenov-2 Hydrothermal Field, 13º31´ N, Central Atlantic: ICP-MS And LA-ICP-MS Data

    By Irina Melekestseva

    The Cu-Zn massive sulfides from the basalt-hosted Semenov-2 hydrothermal field (13°31.13´ N, 44°59.03´ W, MAR) are enriched in Au (22?188 ppm) and Ag (127?1787 ppm) [Ivanov et al., 2008] and elevated

    Sep 14, 2011

  • IMMS
    Ferromanganese Crusts from the Afanasiy-Nikitin Seamounts in the Eastern Equatorial Indian Ocean: A Review

    By V. K. Banakar, R. P. Rajani, A. R. Chodankar

    The Afanasiy-Nikitin Seamounts (ANS) in Eastern Equatorial Indian Ocean (Figure 1) are shown to be the exposed part of the presently buried 85°E Ridge system under the Bengal Fan sediment and were e

  • 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
    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
    Low Cost Drilling for Deep Sea Minerals Exploration

    By Art Wright, Steinar L. Ellefmo, Kurt Aasly, Mike Williamson, Fredrik Søreide, Martin Ludvigsen, Michael Zylstra

    Exploring for minerals on the seabed is challenging and expensive – and the ability to collect representative sub surface samples is essential. The research project MarMine led by NTNU has together wi

    Jan 1, 2017

  • IMMS
    A New Phosphate Anomaly in the South Mexican Pacific

    By Arturo Carranza Edwards

    Sedimento II oceanographic cruise, on board of the B/O El Puma, shows a new high anomaly or phosphate associated with shelf sediments from the south Mexican Pacific. Recently, were found two anomalie

    Jan 1, 2000

  • IMMS
    Chemical And Geological Study Of Mexican North Pacific Littoral Sediments

    By Leticia Rosales Hoz

    A chemical and geological study of beach samples from the Mexican North Pacific was undertaken in order to evaluate the chemical composition of the beach sediments and it s association to lithology, c

    Jan 1, 2000

  • IMMS
    The Impact Of Research Into Underwater Mineral Deposits On Mining Company Exploration Strategies.

    By Burrows D. R.

    Metal-rich sediments precipitating from hot saline brine pools were first discovered in 1965 in the Red Sea.1-2 The subsequent discovery of high temperature black smokers and associated massive sulphi

    Jan 1, 2011

  • 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
    Kennecott?s Cuprion Process For Manganese Nodules

    By Gale L. Hubred

    Kennecott?s Ledgemont Laboratory developed the Cuprion Process to recover metal values from manganese nodules in the early 1970s. A reducing leach of monovalent cuprous ion attacks the manganese oxid

    Jan 1, 2005