Search Documents

  • AIME
    Washington Survey - USBM Criticized

    National Society of Professional Engineers has thrown its full sup- port behind pending legislation to appropriate $500 million for national conversion efforts that would provide employment opportunit

    Jan 1, 1971

  • AIME
    Washington Survey - USBM: Coal And Money Headaches

    By Freeman Bishop

    The Bureau of Mines, beset by political woes not of its own making, is struggling to maintain equilibrium as Congress is being made the focal point for repeated charges that the Bureau has "not done a

    Jan 1, 1970

  • AIME
    Washington Survey - Where Will We Get Our Energy?

    By Freeman Bishop

    The tight electric power supply is one of the most dramatic problems facing the mining industry in 1971. This is caused by rising demands for energy. Clean-fuel and air-pollution controls have contrib

    Jan 1, 1970

  • SME
    Washington, D.C. hosts 2013 RETC

    Every two years, industry leaders and practitioners of tunneling and underground construction gather at the Rapid Excavation and Tunneling Conference (RETC) to learn from their peers about the most re

    Sep 1, 2013

  • AIME
    Washoe Reduction Works---Washoe Smelter

    "The Washoe Smelter is situated about two miles east of the City of Anaconda. The smelter site includes about 240 acres and peculiarly adapts itself in topography to the efficient handling of material

    Jan 1, 1913

  • SME
    Wassara-The Water Powered ITH Hammer

    By D. U. Gustafsson

    After half a million meters drilled with Wassara we are now confident that ITH hammers powered with simple water will become an established product for production drilling. Today four drill rigs in LK

    Jan 1, 1995

  • TMS
    Waste Acid / Metal Solution Reduction And Recovery By Vacuum Distillation

    By Evan O. Jones

    Processes involving distillation under reduced pressure were developed at the Pacific Northwest Laboratory several years ago to recover spent acid solutions generated during the manufacture of nuclear

    Jan 1, 1995

  • AUSIMM
    Waste and Emission Reduction Through Regional Synergies in the Kwinana Industrial Area

    Industries in the Kwinana area have embarked on a journey of improving the eco-efficiency of Western AustraliaÆs primary heavy industry area. The Kwinana Industrial Area has some unique characteristic

    Jan 1, 2002

  • SME
    Waste Clay Disposal And Land Reclamation Techniques In The Florida Phosphate Industry ? Introduction

    By James E. Lawver

    During the past century, the Florida Phosphate Industry has established an enviable record of innovative technology in nearly all aspects of mining and beneficiation. A notable exception is the lack o

    Jan 1, 1984

  • SME
    Waste Clay Ponds In Florida-Regulatory Status Report

    By S. Partney

    Waste clay ponds are a necessary part of the phosphate rock beneficiation process. They are large, averaging a square mile in size; unsightly, in that they protrude 20 to 50 feet (6 -15 meters) above

    Jan 1, 1998

  • SME
    Waste Design In Mining

    By M. Javier

    Mining, waste is growing problem both physical accumulation and increasing toxic uncertainties it presents in the long run. Its value ?zero? is strictly calculated by economy. This mining model begs t

    Jan 1, 2011

  • TMS
    Waste Disposal by Residue Recycling at KGHM Polska Miedz SA

    By Helena Byrdziak

    KGHM Polska Miedz SA, in existence since nineteen seventies, operates three underground mines and three smelters with total production of over 400 000 mtpy of electrolytic copper. Its impact on the en

    Jan 1, 1997

  • AIME
    Waste Disposal in the Pebble Phosphate Rock Industry

    By Randolph C. Specht

    A two year study was made of the waste disposal of the pebble rock phosphate industry. Solid slimes are impounded in large settling areas and the process water is re-used. Clear effluent was not found

    Jan 1, 1950

  • SME
    Waste Disposal In Underground Mines-A Technology Partnership To Protect The Environment (fc2ac075-1967-4724-8734-84eeb97abdfb)

    By N. T. Rempe

    Proper use of natural resources is multiple use. Underground space resulting from mineral extraction offers opportunities for deep geologic waste disposal (DGWD) which can solve many environmental pro

    Jan 1, 1996

  • SME
    Waste Dump Leaching In A Tropical Environment

    By Paul Piercy

    Bougainville Copper Limited operates a porphyry copper mine in Papua New Guinea. The waste dumps will contain 400 to 500 million tomes of rock at the end of nine life. The paper describes investigati

    Jan 1, 1981

  • CIM
    Waste dump management at Quintette Coal Limited

    By W. P. Tassie

    "The location of Quintette Coal Limited's pit and geologic nature of the dedicated reserves combine to introduce a number of factors which can adversely affect waste dump stability. These factors

    Jan 1, 1988

  • SME
    Waste Dump Site Selection By Using Fuzzy Vikor

    By A. Yazadni-Chamzini

    Considering the nature of open pit mines, harvest volume, it usually is required to remove a lot of waste to access to mineral planned grade. So, one of the most important part of open pit mines desig

    Jan 1, 2012

  • AUSIMM
    Waste Dumps - The New Frontier

    By Adam R. A

    Techniques for the optimisation of open pit design and development are now accepted as standard practice in the mining industry. These techniques are used to analyse the impacts on project profitabili

    Jan 1, 1992

  • TMS
    Waste Heat Integration Potential Assessment through Exergy Analysis in an Aluminium Production Facility

    By Cassandre Nowicki, Louis Gosselin, Carl Duchesne

    "Quebec's primary aluminium production industry consumes roughly 39 TWh of electricity per year and is accountable for roughly 7 million tons of CO2 equivalent. By tapping only a small portion of wast

    Jan 1, 2012

  • TMS
    Waste Heat Recovery from Aluminum Production

    By Maria S. Gudjonsdottir, Miao Yu, Gudrun Saevarsdottir, Pall Valdimarsson

    Around half of the energy consumed in aluminum production is lost as waste heat. Approximately 30–45% of the total waste heat is carried away by the exhaust gas from the smelter and is the most easily

    Mar 1, 2018