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  • IMMS
    Developing A Virtual Reality Model Focusing On Reducing The Environmental Impact Of Deep-Sea Mining

    By Jayne Holden

    Development of a deep-sea mining system is a new and interesting field of research. Commercial mining of the ocean floor for SMS deposits is yet to occur, and while exploration of the undersea has bee

    Jan 1, 2002

  • IMMS
    Establishment Of The Endeavour Hydrothermal Vents Marine Protected Area

    By S. Kim Juniper

    The discovery of chemosynthetic-based ecosystems at hydrothermal vents in the deep ocean was arguably one of the most important findings in biological science in the latter half of the 20th century. M

    Jan 1, 2001

  • IMMS
    A Remotely Operated Seafloor Coring System

    By Richard Petters

    Williamson and Associates, Inc of Seattle, Washington has recently built a remotely operated seafloor coring system for Nichiyu Giken Kogyo Ltd and the Metal Mining Agency of Japan (MMAJ). The system

    Jan 1, 1996

  • IMMS
    Assessment Of The Rehabilitation Of The Seabed Following Marine Aggregate Dredging

    By S. E. Boyd

    Studies of benthic recolonization following the cessation of dredging in U.K. waters and elsewhere are limited, and are largely confined to experimental circumstances. Investigations of the physical

    Jan 1, 2004

  • IMMS
    ACS: A Seafloor Drilling System for the Deepsea Methane Hydrate Program Offshore India

    By M. E. Williamson

    A seafloor based robotic drilling system is being developed for the National Institute of Ocean Technology in Chennai, India to support a National initiative for marine methane hydrate research. The

  • IMMS
    First Map and Catalogue of Submarine Mineral Deposits from Spain: Emodnet-Geology Project

    By Lorena Blanco, Guillermo Gómez-Ramos, Iker Blasco, Egidio Marino, Luis Somoza, Ricardo León, Teresa Medialdea, Javier González

    "This study presents the first catalogue of marine mineral deposits and energy resources along the continental margin of Spain. Aggregates, oil and gas and metalliferous mineral areas have been define

    Jan 1, 2017

  • IMMS
    Developing An Environmental Effects Monitoring Protocol For Small-Scale Marine Placer Mining: A Reconnaissance Survey Of Pine Cove, Bale Vertex Newfoundland

    By Ian B. Clark

    In October-November 1993, the Centre for Cold Ocean Resources Engineering, Memorial University of Newfoundland and University of Victoria jointly carried out reconnaissance surveys at Pine Cove, Baie

    Jan 1, 1994

  • IMMS
    The New Exclusive Economic Zone Gas And Mineral Deposits A Target For New Exploration

    By Alexander Malahoff

    With its new continental shelf beyond the exclusive economic zone, New Zealand is a country with just 4% of its territory above water. The other 96% is submerged. New Zealand's marine territory c

    Jan 1, 2011

  • IMMS
    Uranium Series Disequilibrium Dating Of Volcanic Massive Sulphide Deposits

    By Robert Ditchburn

    Within New Zealand?s extended EEZ there exists a vast submarine hydrothermal mineral resource associated with the Kermadec intra-oceanic arc. Along this arc more than thirty submarine volcanoes have b

    Jan 1, 2005

  • IMMS
    Examining Extraction Options For Mining Seafloor Massive Sulphide Deposits

    By Cameron Rees

    The University of New South Wales Mining Research Centre (UMRC) has a longstanding research reputation in mining research, with particular expertise in mining systems, mining geomechanics and excavati

    Jan 1, 2002

  • 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
    Strategic Environmental Assessment Of Marine Sand And Gravel Extraction

    By Terence Day

    The traditional approach to mineral resource development is to identify the resource and then to undertake an environmental impact assessment of the effects of developing the resource. However, the tr

    Jan 1, 1995

  • IMMS
    Nodules: Nineties & Beyond

    By William Siapno

    Manganese nodules, as metal ores, have for the most part been cast aside from further consideration within this century. However, in the decade of the 90s, rising demand at all levels of society, for

    Jan 1, 1991

  • IMMS
    Reconsideration of Fine-scale Dating of Ferromanganese Crusts for More Reliable Microstratigraphic Correlation

    By H. Oda, L. E. Fong, K. K. McBride, B. P. Weiss, F. J. Baudenbacher, A. Usui

    Fine-scale dating is a key parameter in characterizing the growth history of hydrogenetic ferromanganese crusts. We once compared several dating methods, micropaleontological (calcareous nanofossil),

    Aug 24, 2006

  • IMMS
    The Marine Minerals Technology Center

    By J. Robert Woolsey

    The Marine Minerals Technology Center (MMTC) was established by Congress in FY 1988 as part of the Mineral Institutes Program, administered by the U.S. Bureau of Mines under the auspices of the Depart

    Jan 1, 1988

  • IMMS
    Field Tests Of The Percussion-Waterlift And Vibracore/Vibralift Convertible Drill Systems

    By Walter L. O?Niell

    The Continental Shelf Division of the Marine Minerals Technology Center has recently completed field tests of the percussion- waterlift drill and the vibracore/vibralift convertible drill. The two sys

    Jan 1, 1991

  • IMMS
    Canada's Shelf Resource Potential

    By Peter B. Hale

    Canada has a long history of marine-related industry and onshore mining. Even so, commercial interest in marine mining, excluding seawater mineral extraction and offshore extensions of hardrock deposi

    Jan 1, 1985

  • 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
    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
    The Kermadec Arc: A Hot Prospect For Gold-Rich Massive Sulfide Deposits?

    By Cornel E. J. de Ronde

    Volcanic arcs, including both island arc and intra-oceanic arc systems, combined extend for ~22,000 km around the Earth, with the majority (~20,000 km) occurring in the Pacific basin. These arcs are

    Jan 1, 2002