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The Critical Role Of Geology In Reserve Determination (d51e70af-4724-4ab3-b1c6-06d3550028ab)
By K. A. Grace
"An ore is a rock regardless of its rarity or value."* The application of geology does not cease with the discovery and delineation of a mineral resource, but continues in the calculation of the
Jan 1, 1985
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Government Regulation Of Subsidence Due To Underground Coal Mining And Its Impact On Future Subsidence Research - Background Of The Surface Mining Control And Reclamation Act And Federal Subsidence Control Regulation
By C. Y. Chen
In order to put an end to the uneven environmental standards and enforcement established by various coal mining States in the United States, the Congress passed and the President signed the Surface Mi
Jan 1, 1985
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Nonmetallic Industrial Minerals
By S. Zamna, M. E. Defoe, Franklin T. Davis, Earl Rau, Yarroll. Warren H., Paul D. Chamberlin
This section contains a description of the ore processing methods of the walled industrial minerals that are not described in major sections of the book. Table I contains the production figures for ea
Jan 1, 1985
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A Combination Blind Or Reaming Drill For Raise Construction
By L. "Andy" Anderson, Stephen N. Short, James E. Friant
Since the introduction of "boxhole" drilling in South Africa in 1973, the concept of a blind raise, drilled upward from below, has become an accepted mining practice. A combination machine, capable of
Jan 1, 1985
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Design of Plants
By F. A. Gates, Bengt Samuelson, James E. Edmunds, S. McCune, Neil Hario, Norman L. Weiss, J. M. Bertram, A. M. Cavaliere, F. M. Jr. Stephens, D. D. Chiang
DESIGN BASIS Size of Project The size of the project generally is expressed in tons of ore milled per day, but company policies differ widely in this respect with a few adhering to this set figu
Jan 1, 1985
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Oxides of Heavy Metals
By S. Zaman, F. F. Aplan, Franklin T. Davis
This section deals with the oxides of heavy metals, namely, columbium and tantalum, rare earths, chrome, manganese, titanium, tin, and tungsten. Table I contains the production figures for each of the
Jan 1, 1985
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Nickel and Cobalt
By J. R. Boldt, C. M. Kleemann, V. N. Mackiw, B. Meddings, J. A. MacLellan, E. J. Maney, D. E. Halter, D. J. I. Evans, J. Honkasalo, M. F. Dufour
The technology employed in the processing of nickel- and cobalt¬bearing ores is a continually developing process for utilizing the natu¬ral resources available at a given time. Most of the nickel-bear
Jan 1, 1985
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Thickening, Filtering, Drying
By E. B. Fitch, D. A. Dahlstrom
Liquid-solids separation is common to practically all mineral and coal processing as the bulk of beneficiation plants employ water as the major processing vehicle. The growing usage of hydrometallurgy
Jan 1, 1985
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Classification Theory
By B. Fitch, E. J. Roberts
Definitions and Terminology Classification is defined within this section as the separation of solid particles into size or weight fractions or classes by differential settling through a fluid. It
Jan 1, 1985
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Optimization Of Fragmentation In An Underground Mine ? Introduction
By Dan Nilsson
Rock from underground mining has a size-distribution, that varies from mine to mine, depends on rock conditions and mining method and on how much explosives etc, that is used. Because at the high co
Jan 1, 1985
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The Oil and Gas Industry: Regulation and Public Policy
By William A. Vogely, Robert T. Deacon, Walter J. Mead
Oil and gas together are the most important energy sources consumed in the United States. In 1983, 67% of total energy consumption was represented by these two resources (43% was oil and 25% natural g
Jan 1, 1985
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Fluid Energy Mills
By H. Boyd
Fluid energy grinding, or jet pulverization, refers to the process of entraining solid particles in high velocity gaseous or vaporous streams and reducing their size by impact and attrition against ot
Jan 1, 1985
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Sampling and Testing
By J. A. Herbst, H. R. Cooper, R. J. Brison, R. W. Harper, K. P. Ananthapadmanabhan, W. C. Hellyer, B. H. Bergstorm, D. M. Hopstock, H. Rush Spedden, W. C. Hellyner
Scope of Section The physical characterization of an ore or mineral mixture in such detail that mineral processing may be effectively applied to create more useful products is one part of the techn
Jan 1, 1985
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Energy Policy Issues
By Richard L. Gordon, William A. Vogely
ENERGY POI.ICY-PRINCIPLES AND THEIR PRACTICE Persistently, at least since the end of World War 11, governments have intervened broadly, deeply, and incoherently in major energy markets. If we take a
Jan 1, 1985
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The Production of Mineral Commodities
By Richard L. Gordon, William A. Vogely
In this chapter, the principles that determine the procedures selected to transform minerals in the ground into usable commodities are re¬viewed.a I argue here that straightforward mod¬ification of th
Jan 1, 1985
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Rod Mills
By C. A. Rowland
Introduction Rod mills are horizontal, cylindrical, rotating, tumbling mills in which steel rods, that are usually about 6 in. shorter than the length of the grinding chamber, are used for grinding m
Jan 1, 1985
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Substitution Of Fuel Oil By Coal Derived Alternate Fuels At Florida Power & Light Company ? Introduction
By R. A. Hevia
Florida Power and Light is the fifth largest investor-owned electric utility in the country. It has a service territory that covers 35 counties, or 28,000 square miles, 2.5 million customers, and serv
Jan 1, 1985
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Mineral Resource Information, Supply, and Policy Analysis
By William A. Vogely, DeVerle P. Harris
INTRODUCTION Perspective The phrase "minerala resource appraisal" is widely and loosely used to refer to any quantitative description of a naturally occurring source of fuels, metals, or nonmetal
Jan 1, 1985
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Mechanical Classifiers (bdc31956-5f49-422b-be6a-4ac9e99629f9)
By H. W. Hitzrot
Introduction Mechanical classifiers consist of a settling tank with parallel sides and a sloping bottom equipped with a mechanism which continuously agitates the pulp and removes the settled solids
Jan 1, 1985
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Tumbling Mill Characteristics
By J. D. Decker, T. E. Norman
Introduction Grinding is the reduction of ore and similar raw materials to particle sizes below the practical limits of commercial crushing ma¬chines. This size is about 36 in. (1 cm), in most cases,
Jan 1, 1985