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  • IMMS
    Heavy Minerals, Offshore Virginia: A Project Report

    By C. H. Hobbs

    A recently completed series of projects funded by the Commonwealth of Virginia and the U.S. Minerals Management Service was designed to assess the distribution of heavy minerals on the inner continent

    Jan 1, 1988

  • IMMS
    Evaluating Grade and Tonnage Estimates of Seafloor Massive Sulfide Deposits

    By J. W. Jamieson

    "The future of the marine mining industry is tied to the resource potential of the seafloor. Everything from economic feasibility, policy decisions and environmental impact assessments to extraction t

    Jan 1, 2017

  • 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
    Finding Femn Crusts: Growth, Structure, Texture and Geophysical Detection

    By Mark Vardy, Kate Dobson, Isobel Yeo, Paul Lusty, Bramley Murton

    In response to anthropogenic climate change, the way in which we use and generate energy is changing. To facilitate these developments, it is essential that we increase and diversify the supply of ‘E-

    Jan 1, 2017

  • IMMS
    Phase Composition of Gold from Massive Sulfides of the Semenov-2 Hydrothermal Field (13º31.13´N), Mid-Atlantic Ridge ? Introduction

    By I. Yu. Melekestseva

    The Semenov hydrothermal sulfide cluster (13º31´N), consisted of five fields (Semenov-1, -2, -3, -4, and -5), was discovered in 2007 in the 30th cruise of R/V Professor Logatchev [Beltenev et al., 200

    Jan 1, 2010

  • IMMS
    Rovdrill® - The Development and Application of a New ROV Operated Seabed Drilling and Coring System

    By Allan Spencer

    In March 2007, Nautilus Minerals Inc. announced that they had commenced their 2007 exploration and development program with the mobilization of the Research Vessel Wave Mercury and the Survey Vessel A

  • IMMS
    The Prospects of Mining of Minerals from the Deep Seabed

    By Satya Nandan

    • A review of the structure and mandate of the Authority – its main functions. • The different types of mineral resources found in the deep seabed – their global distribution. • The Development of

  • IMMS
    Development of Equipment for Reconnaissance Level Detection and Confirmation of Deepwater Massive Sulfide Deposits

    By Will Roberts, M. E. Williamson

    After verification of methodology and testing of prototype systems during 2005/06, Nautilus Minerals expanded their Papua New Guinea (PNG) operations to a full commercial exploration program in 2007

  • IMMS
    Methane Hydrate Exploration Around the Eastern Nankai Trough

    By Masaru Nakamizu, Tetsuya Fujii, Tatsuo Saeki, Ken-ichi Yokoi

    Methane hydrate, a solid compound formed from methane and water, occurs naturally in permafrost regions on-land and in deep continental slopes offshore and has been examined as future energy resource

  • IMMS
    The Physical Properties of the Powdered Manganese Nodule and Bottom Sediment from C-C Zone, Northeastern Pacific

    By Hunsoo Choi, Sang-Mo Koh

    Manganese nodule, the aggregate of fine grained manganese oxide minerals, is very brittle and fragile. In exploitation of manganese nodule, manganese nodules are easily broken into small pieces or p

  • IMMS
    Detection and Quantification of Seafloor Ilmenite Deposits Utilizing Induced Polarization

    By Curtis Clement

    Williamson & Associates, Inc. has developed a marine mineral exploration tool using an induced polarization technology (IP) under license from the US Geological Survey. Developed by Jeff Wynn at the

  • IMMS
    Gas Hydrates as a Future Energy Resource – Scientific Aspects and Perspectives

    By Christian Müller, Hermann-Rudolf Kudrass, Christian Reichert

    Recent studies estimate the depletion mid-point (dmp) for conventional natural gas to be reached around year 2022, and for conventional oil to be reached around year 2017. These numbers are based on

    Aug 24, 2006

  • IMMS
    Distal Metalliferous Sediments and Search of Underwater Hydrothermal Deposits

    By Evgeny G. Gurvich

    While direct study of high temperature hydrothermal activity and the associated mineral formation as well as study of their scales are possible in the modern ocean, researchers are deprived of such

    Aug 24, 2006

  • IMMS
    Eastern English Channel Broadscale Mapping

    By Sally Philpot, Siân E. Boyd, Hubert L. Rees, Emma Bee, Carla Houghton, Ceri James, Silvana N. R. Birchenough, S. Limpenny David, A. Coggan1 Roger, Koen Vanstaen

    Every year approximately 22 million tonnes of marine sand and gravel are dredged form British waters. The eastern English Channel (EEC) contains substantial reserves, a proportion of which have been

    Sep 24, 2006

  • IMMS
    New Frontier Explored by D/V Chikyu

    By Wonn Soh

    As for Earth, where human beings live, approximately 70 % of its surface is covered by oceans. Today, advanced technology has led us to understanding the abyssal ocean floor through the use of subme

  • IMMS
    Application Of High Resolution Element Analysis Of N-E Pacific Sediments

    By In Kwon Um

    The XRF Core-Scanner system performs non-destructive analysis of elements from Mg to U, in concentrations of ppm levels on split cores with digital images. Using the AVAATECH XRF Corescanner system, w

    Jan 1, 2011

  • IMMS
    InterRidge Statement of Commitment to Responsible Research Practices at Deep-sea Hydrothermal Vents

    By Colin Devey

    As marine research scientists we especially appreciate the uniqueness and complexity of the deep-sea hydrothermal vent fauna and environments, and are particularly interested in preserving vents for

    Aug 24, 2006

  • IMMS
    Prospecting For Submerged Treasures: Korean Deep Seabed Mining Exploration

    By Ki-Hyune Kim

    The Korea Ocean Research and Development Institute conducted its first exploration for deepsea mineral resources in 1983, and began a systematic deepsea prospecting in 1989 among Micronesian islands a

    Jan 1, 2011

  • IMMS
    Marine Gas Hydrate Research at IFM-GEOMAR: An Overview on History and Recent Developments

    By G. Rehder, C. Hensen, P. Linke, J. Bialas, M. Haeckel, W. Weinrebe, K. Wallmann

    Research on marine gas hydrate and the methane cycle has a tradition at IFM-GEOMAR. In summer 1996 during a cruise with RV SONNE offshore Oregon (USA) scientists of the former GEOMAR recovered the lar

    Aug 24, 2006

  • 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