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  • AIME
    Heats Of Formation Of Some Ferro-Calcic Silicates.

    By C. Y. Wen, H. O. HOPMAN

    l. INTRODUCTION. IN casting a thermal balance of the heat generated and absorbed in a blast-furnace treating lead-, copper- and similar non-ferrous ores, assumptions have always to be made for the va

    Jul 1, 1910

  • NIOSH
    Heavy Construction Equipment Noise Study Using Dosimetry And Time-motion Studies

    By Ellsworth Spencer

    Noise induced hearing loss continues to afflict workers in many occupational settings despite longstanding recognition of the problems and well-known methods of prevention and regulations. Sound level

  • SME
    Heavy Equipment - Caterpillar Joins Shovel Market - Equipment Manufacturers Position Themselves To Meet Demand From Rising Commodity Prices

    In early June, Rio Tinto?s chief executive officer Tom Albanese said that he expected demand for iron ore, aluminum and copper to double in the next 15 years. Driven by global industrialization and u

    Jan 1, 2010

  • SME
    Heavy Media Separation (4d7619bc-461a-4d27-a4cd-6bd70fccd2df)

    By Vas P. Srinivasa

    This paper examines the role of the heavy media separator in the mineral industry. Procedures used in selecting the separating vessel, developing the process flowsheet, and designing a heavy media cir

    Jan 1, 1981

  • AIME
    Heavy Media Separation of Aluminum from Municipal Solid Waste (68349461-89b7-46d2-8860-72767c8943bc)

    By W. L. Freyberger, H. Alter, K. L. Woodruff, E. L. Michaels

    Laboratory and pilot scale tests have been made to determine the utility of heavymedia separation, particularly a cone-type separator, as a means of recovering aluminum and other values from shredded

    Jan 1, 1976

  • SME
    Heavy Medium Cleaning of – 28 Mesh Coal

    By Edward Skolnik

    The concept of using fluid dense media to separate heavy ore constituents from the lighter gangue dates back to 1858, when it was patented by Sir Henry Bessemer. Its use in coal did not begin until af

    Jan 8, 1980

  • AUSIMM
    Heavy Medium Separation at Iscor's Sishen Iron-Ore-Mine

    The Sishen iron-ore-mine produces 3 pro= ducts with size gradings of 25 to 8 mm, 11 to 5 mm and 5 to 0,2 mm and has a product capacity of 20 Mtpa. Ore is produced at an average Fe content of 66,2

    Jan 1, 1987

  • SME
    Heavy Metal Patterns In Stream Waters, Stream Sediments And Selected Aquatic Life, Northern New Lead Belt, Southeast Missouri

    By Paul Dean Proctor

    The known northern ore zones of the New Lead Belt of Southeast Missouri extend to the drainage divide between the Meramec River draining north and east and that of the Black River draining southward.

    Jan 1, 1977

  • SME
    Heavy Metal Removal For Water Reuse And Effluent Treatment ? Introduction

    By J. L. Boyd

    The mining and processing of basic metals relies on water as a medium for transport. Metallurgical ores are ground, concentrated, leached and refined in an aqueous medium. Water is used for temperatur

    Jan 1, 1975

  • 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

  • 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

  • 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

  • CIM
    Heavy Mineral Survey of the Syrian Beach Sands, South of Tartous: Their Nature, Distribution and Potential

    By Bassam Kattaa

    "Abstract - A heavy mineral survey of beach and dune sands including geochemical analysis for trace elements was undertaken to evaluate the economic potential of the sands and to understand the nature

    Jan 1, 2002