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Microprocessor studies in process metallurgyBy K. Ananthanarayanan, R. I. L. Guthrie, S. A. Argyropoulos
"The low cost and availability of micro-computers and their peripherals provides the metallurgical engineer with the opportunity to use such computers in a wide variety of applications. In this paper,
Jan 1, 1980
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Sill pillar recovery at the Louvicourt mineBy D. Fleury
"This paper describes the challenges of mining a sill pillar under various types of paste backfill quality. From 1994 to 2002, Louvicourt mine produced approximately 12,600,000 t grading 3.5% Cu, 1.5%
Jan 1, 2005
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OFR-146(4)-77 Comparative Coal Transportation Costs: An Economic And Engineering Analysis Of Truck, Belt, Rail, Barge And Coal Slurry And Pneumatic Pipelines - Volume 4 - Barge Transport ? 4.1 IntroductionBy Michael Rieber
Commodity transportation by barge is possible on about 25,000 miles of navigable inland waterways in the contiguous 48 states. Barge operations are used chiefly for the movement of bulk raw materials
Jan 1, 1977
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Elasticity anisotropy in Oshima GraniteBy A. Golshani, M. Oda, K. Suzuki, T. Takemura
Anisotropic behaviours of OhshimaOshima granite were investigated by carrying out uniaxial compression tests, together with observations of microcracks under an optical microscope. The elastic modulus
Jan 1, 2003
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Ways To Deal With Mine/Plant Effluent Residues: A Roadmap ProcessBy K. Tabra
In a mine operation, the proper strategy to handle residues is one of the main concerns, in particular when dealing with mine/plant liquid effluents. Most active water treatment systems at metal mines
Feb 27, 2013
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RI 5959 Electrorefining Beryllium - Studies Of Operating Variables ? Introduction And SummaryBy M. M. Wong
Beryllium possesses attractive properties for use in the nuclear and space fields. Since fused-salt electrorefining can be employed to produce this metal in high-purity form from low-grade or scrap me
Jan 1, 1962
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OFR-92-83 Preparation And Evaluation Of Self-Regenerative Carbon Monoxide Detection GelsBy John G. Palmer
Continued development of an especially impregnated silica gel capable of reversible chemical detection of carbon monoxide (CO) was reported. The affects of changes in mine-related ambient conditions o
Jan 1, 1982
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RI 5071 Laboratory Evaluation Of Vacuum Flotation For Cleaning Coal Fines ? Introduction And SummaryBy H. L. Riley
Cleaning and handling of fine coal are generally conceded to be more difficult problems than preparation of the coarser sizes. Increased mechanization in the coal-mining industry has, in general, resu
Jan 1, 1954
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Thermodynamics Applied To Ferro-Alloys SmeltingBy F. Bonnet, J. Lehmann, H. Gaye
A review of thermodynamic information and models of slags, including associated software when available, is presented. The pertinence and accuracy of these models is discussed by comparison of their p
Jan 1, 2004
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Exploratory Shafts For The Nuclear Waste Repository In BasaltBy Birger Schmidt
INTRODUCTION Conceptual design of the first Exploratory Shaft (ES-I) for the Nuclear Waste Repository in Basalt (NWRB) began in July 1981; detailed design began in February 1982, and was largely co
Jan 1, 1987
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RI 8773 Mechanical Properties of Some Portland Cement Concretes Made With Coal and Coal Waste as AggregatesBy Bing W. Jong
A bench-scale evaluation of coal and coal waste materials as aggregate materials for use in longwall mine supports was undertaken as part of the Bureau of Mines Health and Safety program on ground con
Jan 1, 1983
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New Support Concepts for Hard Rock Mining ApplicationsBy Thomas M. Barczak
A critical safety component for all underground mining is intrinsic and standing support systems. Specifically, tabular hardrock mining exploits a wide variety of deposits that require various metho
May 1, 2007
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Overview of Low-Rank Coal Drying – Preprint 97-61By W. G. Willson, D. E. Walsh, B. Irwin
Low-rank coal (LRC) drying processes are generally categorized by operating temperature, drying environment and type of feed (either sized or ground coal). Within these broad categories, drying proce
Feb 24, 1997
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An Innovative Process for Comprehensive Utilisation of Clay-Vanadium OresAn Innovative Process for Comprehensive Utilisation of Clay-Vanadium Ores By adopting conventional processing technologies such as flotation, gravity concentration, and magnetic separation, it is dif
Sep 13, 2010
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OFR-8-75 One-Hour Self-Rescue Breathing Apparatus - SummaryBy Yi-Shen Li
This report has been prepared by Lockheed Missiles & Space Company, Inc. (LMSC), under United States Bureau of Mines Contract No. H0220040 dated 21 June 1972 for the design, development, fabrication,
Jan 1, 1974
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Excavation simulation for information-oriented construction of large powerhouse caverns at depthBy J. Xiao, Y. Jiang, Y. Tanabashi, Z. Song
Modelling the effect of blasting-caused damage, anisotropy of rock masses and excavation sequence on deformational behaviour and stability of large-scale underground caverns is important in the design
Jan 1, 2003
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OFR-35-91 Evaluation Of The Tin-Tungsten - Greisen Mineralization And Associated Granite At Sleitat Mountain, Southwestern AlaskaBy Roger E. Burleigh
In June, 1989, the U.S. Bureau of Mines, undertook a 9-day evaluation of the tin resource potential of the Sleitat Mountain tin deposit. Significant tin-tungsten mineralization is associated with quar
Jan 1, 1991
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IC 7978 Mechanical Mining In Some Bituminous Coal Mines - Progress Report 9: Face Haulage ? SummaryBy J. J. Shields
This study by the Federal Bureau of Mines concerns different methods of face haulage used with various types of continuous-mining machines, mobile-loading machines, and track-mounted equipment under v
Jan 1, 1960
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Development Of A High Blow Energy Hydraulic ImpactorBy Wm. Ross Wayment, Innes P. Grantmyre
INTRODUCTION It has been recognized for some time that major changes in mining methods will be required in the near future. Two types of factors contribute to this need for change. Intrinsic factor
Jan 1, 1976
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Design And Construction Of Lake Mead Intake No. 3 Shafts And TunnelBy Jon Hurt
INTRODUCTION The entire scope of new facilities for Lake Mead Intake No. 3 includes a sub-merged intake structure, a deep tunnel beneath Lake Mead, a tunnel access shaft, Intake Pumping Station No. 3