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  • AUSIMM
    Waste Rock Pile Construction to Lower Closure and Relinquishment Costs

    By J R. Taylor, J A. Muchan, S M. Pape, B S. Davis

    Acid and metalliferous drainage (AMD) is routinely derived from waste rock, tailings, pit wall rock, underground mine voids, heap leach pads, ore stockpiles, concentrate stockpiles and even slag piles

    Jun 28, 2016

  • AIME
    Waste Slate As A Raw-Material Source Of Lightweight Aggregates

    By John E. Conley

    THE slate industry of the United States has shown a marked decline in value of products made annually since the peak year 1925, although there has been moderate improvement over the lean years 1932 to

    Jan 1, 1942

  • AIME
    Waste Slate As A Raw-Material Source Of Lightweight Aggregates (cde78d82-951b-494c-9060-ff73083e4cc5)

    By John E. Conley

    THE slate industry of the United States has shown a marked decline in value of products made annually since the peak year 1925, although there has been moderate improvement over the lean years 1932 to

    Jan 1, 1942

  • SME
    Waste Sources And Impacts Of Waste Disposal On Area Water Resources Florida Phosphate Industry ? Introduction

    By Jim V. Rouse

    The mining, beneficiation, and processing of phosphate rock in the Florida phosphate district constitutes a large portion of the southeastern mining industry. For example, 1973 production is reported

    Jan 1, 1983

  • CIM
    Waste To Ore: A Goldcorp Story

    By T. Ward, K. Shah, K. Murray

    The mining industry is processing deposits with ever decreasing grade at ever increasing operating costs while margins are under constant pressure by material substitution and recycling. We are reachi

    Jan 1, 2018

  • TMS
    Waste to Wealth: Production of Fe-Ni from Lateritic Ore/Chromite Overburden of Sukinda Deposit in Orissa, India

    By Bhagyadhar Bhoi, Chitta Ranjan Mishra, Hara Prasanna Mishra

    "In the Sukinda Valley of Orissa, India, the total quantity of nickel ore reserves comprising of both lateritic and chromite over burden(COB) have been estimated at around 231 million tonnes containin

    Jan 1, 2011

  • SME
    Waste Transport via Conveyor at ASARCO Mission Complex

    By Robert Roggenthen

    In 1994, ASARCO's Mission Complex Mine Planning Department designed a new stripping schedule to take advantage of reserve opportunities. Based upon the new stripping design, overburden removal ex

    Jan 1, 1998

  • TMS
    Waste Treatment By Ausmelt Technology

    By Brian Lightfoot

    Ausmelt Technology uses a furnace/slag/lance system in a way analogous to the way a chemical engineer would use a mixed reactor. The technology is sufficiently versatile to treat materials under a ver

    Jan 1, 1994

  • IMPC
    Waste Treatment Management in the Northwestern Russia

    By Anatoly N. Vinogradov, Vyacheslav A. Tsukerman

    The North-West Russia for 70 years is one the main producers of Cu, Ni, Co, Al, P, REE, Zr, Ti, Ta, Nb, Fe ores and other minerals in the Europe. The largest mining companies locates in the Murmansk r

    Jan 1, 2003

  • SME
    Waste Water Treatment Plant for Sewage Water in the Sharrcem Plant

    By John Mastoris, Shkurta Gashi, Kostis Dragasakis, Kostas Kouklidis, Halil Berisha

    Water is increasingly recognized as a critical issue for sustainable development, becoming as important as carbon to corporate responsibility and reputation. Although the cement industry’s overall ‘wa

    Jan 1, 2017

  • TMS
    Waste Water Treatment Plants Of Asarco Incorporated-A Review

    By V. Ramachandran

    Over the past 20 years, water treatment plants have been built at various Asarco facilities to effectively handle the process waste streams that need to be bled from the system. The current paper revi

    Jan 1, 1994

  • TMS
    Waste-Less Technology for Processing of Subgrade Lead Concentrates and Flotation Middlings Containing Precious Metals

    By A. V. Tarasov, A. D. Besser

    A processing flowsheet has been developed for treating substandard lead-containing polymetallic bulk concentrates and intermediate flotation products containing precious metals, which comprises oxidiz

    Jan 1, 2000

  • TMS
    Waste: The Manufacturing, Resource Of Tomorrow

    By Claire A. Chanenchuk

    Catalytic Extraction Processing (CEP), a technology commercialized by Molten Metal Technology, Inc., a US.-based company, can convert industrial, household, and government wastes into commercial resou

    Jan 1, 1994

  • SME
    Wastes Associated With A Fractured Hard Rock Mine

    By R. E. Williams

    University of Idaho scientists research under U.S. Bureau of Mines Cooperative Agreement C0278001 constitutes a complex hydrogeological, hydrochemical and metallurgical mine waste management project a

    Jan 1, 1990

  • IMPC
    Wastewater characterization from a ferromanganese alloys plant

    By Érica Linhares, Anderson Silveira Lopes, Aline Costa

    In the production units of ferromanganese alloys wastewater are generated. They mainly arise from gutters of drainage water from warehouse of raw material (manganese ore, reducing agents and other), p

    Jan 1, 2014

  • SME
    Wastewater Discharge Sites From Mining Operations In The "New Lead Belt" Of Missouri

    By Nord L. Gale

    Lead, zinc, copper, silver, cadmium and many other heavy metals which are potentially hazardous if released into the environment in wastewater discharges have been of considerable concern to governmen

    Jan 1, 1977

  • SME
    Wastewater Remediation With Collophane

    By M. C. Fuerstenau

    Collophane, cryptocrystalline fluorapatite, is examined as a substrate for plant water and wastewater remediation. The attenuation of Fe3+, Cr3+, Fe2+, Cd2+, Hg2+ and Pb2+ is presented as a function o

    Jan 1, 2003

  • SME
    Wastewater Remediation With Collophane (314ec19b-a061-40af-a337-ceb44bfd8995)

    By M. C. Fuerstenau

    Collophane, cryptocrystalline fluor-apatite, is examined as a substrate for plant water and wastewater remediation. The attenuation of Fe3+, Fe2+, Hg2+, Pb2+, and Cd2+ is presented as a function of me

    Jan 1, 2001

  • CIM
    Wastewater treatment at Hudson Bay Mining and Smelting Co., Limited

    By R. V. Typliski, G. J. Labarre

    "Hudson Bay Mining and Smelting Co., Limited, Flin Flon, Manitoba, has developed a metallurgical wastewater treatment system employing two-stage lime neutralization, sludge recirculation and conventio

    Jan 1, 1980

  • CIM
    Wastewater Treatment at Hudson Bay Mining and Smelting Company Limited, Flin Flon, Manitoba

    By R. V. Typliski, G. J. Labarre

    "Hudson Bay Mining and Smelting Co., Limited, Flin Flon, Manitoba, Canada, has developed a metallurgical wastewater treatment system employing two-stage lime neutralization, sludge recirculation and c

    Jan 1, 1980