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  • SME
    Heavy Metal Sorption With Clinoptilolite Zeolite: Soil And Water Treatment Alternatives

    By D. Leppert

    Clinoptilolite zeolite may offer attractive, cost-effective alternatives for remedial cleanup of old minesites, smelters and other sites with heavy metal contamination. Previous research demonstrates

    Jan 1, 1989

  • TMS
    Heavy Metal Stabilization Optimization Study

    By Keith E. Forrester

    This paper presents results of laboratory and field optimization of a proprietary processes developed by FESI for the stabilization of heavy metal bearing wastes. The specific waste studies presented

    Jan 1, 1994

  • SME
    Heavy Metals And Elements In Coastal Waters Close To Mining Activities

    By G. Gaidajis

    Sea water samples collected from coastal waters in the vicinity of the Stratoni mining operations, in North-Aegean Sea were analysed for dissolved metals and elements. The maximum concentrations obser

    Jan 1, 2006

  • SME
    Heavy Metals And Trace Elements Concentrations In Water Discharges From The Lignite Surface Mines Of Ptolemais Basin

    By F. Sachanidis

    The lignite surface mines of Ptolemais basin operate according to special environmental terms regarding the concentrations of heavy metals and trace elements in water discharges. Based ?n the results

    Jan 1, 2006

  • AIME
    Heavy Metals In Stream Sediment Used as Exploration Guides

    By Harold Bloom, H. E. Hawkes

    Streams and rivers are the principal channels into which the weathering products of rocks and their contained ores are funneled. The inorganic load of a stream system is a crude sample of all the eart

    Nov 1, 1956

  • IMPC
    Heavy Metals Migration Decrease in the Area of Industrial Facility for Environmental Safety

    By K. V. Fedotov, G. I. Sarapulova

    The study is devoted to the earth's surface protection and is aimed at improving the ecological safety of the territories in the mining industry. Identification of the diagnostic signs and quantitativ

    Jan 1, 2018

  • TMS
    Heavy Metals Recovery in Vitrification Process of MSW Residues

    By Takuya Shinagawa

    After vitrification of the residues from a municipal solid waste incinerator, the vitrified products can be used as a construction material, and the dust can be used as raw materials for the non- ferr

    Jan 1, 2002

  • TMS
    Heavy Metals Removal From Small-Arms Firing Ranges

    By Jerold L. Johnson

    Remediation of small-arms firing ranges is being investigated by the Naval Civil Engineering Laboratory and the U.S. Bureau of Mines. Scheduled closures of military installations, as well as the manag

    Jan 1, 1993

  • TMS
    Heavy Metals Removal from Small-Arms Firing Ranges (d57464b2-215f-4c60-8f75-d50df113d8b3)

    By J. L. Johnson

    Remediation of small-arms firing ranges is being investigated by the Naval Civil Engineering Laboratory and the U.S. Bureau of Mines. Scheduled closures of military installations, as well as the manag

    Jan 1, 1991

  • CIM
    Heavy mineral by-products from Athabasca tar sands

    By Lloyd W. Trevoy

    Syncrude Canada Limited is presently studying commercial production of heavy minerals from plant tailings of the openpit A lhabasca tar sands operation. When tar sands are processed and upgraded to sy

    Jan 1, 1984

  • CIM
    Heavy Mineral Concentration from Oil Sand Tailings

    By Francis Chachula, Niel Erasmus

    "In 2002, Titanium Corporation Inc. focused its attention on the development of a process for the recovery of valuable heavy minerals, including zircon and titanium bearing minerals from oil sands fro

    Jan 1, 2008

  • AIME
    Heavy Mineral Deposits Of The East Coast Of Australia

    By N. H. Fisher

    GEOGRAPHICAL DISTRIBUTION THE most important known deposits in Australia of what are commonly referred to as the beach-sand minerals are along the most easterly part of the Australian coast, betwee

    Jan 1, 1947

  • SME
    Heavy Mineral Deposits Of The Fox Hills Formation Located Near Limon, CO

    By F. L. Pirkle

    A heavy mineral deposit about 1.6 km (1 mile) in length, 0.13 km (0.08 mile) in width and averaging about 3 m (10 ft) in thickness is exposed approximately 130 km (80 miles) east of Denver, along Inte

    Jan 1, 2012

  • SME
    Heavy Mineral Mining In Florida

    By Jr. Garnar

    Heavy mineral mining has been a relatively small but important Florida industry for over sixty years. Geology of the Florida heavy mineral deposits is similar. Each formed along active coastlines afte

    Jan 1, 1978

  • SME
    Heavy mineral mining in the Atlantic Coastal Plain of Florida and Georgia and the chemical and physical characteristics of the deposits

    By F. L. Pirkle, D. L. Pirkle, E. C. Pirkle, W. A. Pirkle

    Heavy minerals have been mined from the sands of the United States’ Atlantic Coastal Plain since the early part of the twentieth century. Production of ilmenite from beach sands near Mineral City (Po

    Jan 1, 2005

  • AUSIMM
    Heavy Mineral Placer Deposits Along the West Coast of South Africa - A World-Class Resource of Zircon, Ilmenite and Rutile

    By C Philander

    The West Coast of South Africa is well known for its placer gem quality diamond deposits and also associated with these hosts of Cenozoic unconsolidated marine and aeolian sand and gravel are signific

    Jan 1, 2008

  • SME
    Heavy Mineral Placers (4805d0a4-d7ed-4952-bcb7-1b02a0140894)

    By K. J. Stanaway

    Concentrations of minerals between 3.5 and 5 specific gravity such as ilmenite, rutile and zircon in large accumulations of sand constitute "heavy mineral" placers. Two fundamentally different modes o

    Jan 1, 1991

  • SAIMM
    Heavy Mineral Processing At Richards Bay Minerals

    By J. D. Steenkamp, G. E. Williams

    Keywords: Ilmenite, titania slag, pig iron, rutile, zircon Located on the eastern shores of South Africa, 180 km north of Durban, Richards Bay Minerals (RBM) produces approximately 2.0 million met

    Jan 1, 2006

  • AUSIMM
    Heavy Mineral Prospectivity in the Eucla Basin

    By B Hou

    The Eucla Basin in southern Australia is emerging as an important global source of zircon from heavy mineral sands. Understanding the geological evolution of the basin and movement of heavy minerals d

    Oct 5, 2011

  • TMS
    Heavy Mineral Provenance Studies in the Iditarod and Innoko Districts, Western Alaska

    By T. K. Bundtzen

    Placer gold in the Iditarod and Innoko mining camps of western Alaska is derived from a suite of comagmatic, Late Cretaceous to Early Tertiary, alkali-calcic, meta-aluminous. volcanic-plutonic complex

    Jan 1, 1987