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Chronology of Lead-Mining in the United StatesBy W. R. Ingalls
THE following chronology presents the history of lead-mining in the United States in a brief form and is a useful reference in connection with the statistics of production 1621. Lead was mined and s
Jan 9, 1907
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Chronology Of SMCRA Implementation
CHRONOLOGY OF SMCRA IMPLEMENTATION Prior to SMCRA 25 states regulated surface coal mining; no program met requirements established by SMCRA. August 3, 1977. Public Law 95-87 (SMCRA) signed into la
Jan 1, 1992
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Chronostatistics ù A Powerful, Pragmatic New Science for MetallurgistsForty years ago Dr Pierre M Gy, a metallurgist, introduced variography as applied to monitoring a process. Consequently, his followers used the variogram to elaborate meaningful process control charts
Jan 1, 2006
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Chrysotile Asbestos in Munro and Beatty Townships, OntarioBy N. W. Hendry
ABSTRACT Exploration by geophysical methods and diamond drilling of an occurrence of chrysotile asbestos, located ten miles east of Matheson, Ontario, was commenced on March 25th, 1949, by the Canadi
Jan 1, 1951
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Chrysotile Asbestos: Relationship of the Surface and Thermal Properties to the Crystal StructureBy Edward Martinez
Due to its unique properties, chrysotile asbestos is used in many diversified applications. In recent years, a better understanding of the structure and properties of chrysotile has evolved due to the
Jan 1, 1966
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Chunnel Repairs Call On Conjet Hydrodemolition RobotsTrain services through the Channel Tunnel linking Britain and France where scheduled to be fully restored in February 2009 following several months of repairs after a major fire in the tunnel on Sept.
Jan 1, 2009
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ChuquiA mine that staggers the imagination is Chuquicamata, the granddaddy of them all. In 1968 production exceeded 300,000 tons of copper. Production began in 1915 and mining proceeded solely on oxide ores
Jan 11, 1969
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ChuquicamataIN CIRCLES where mining men are wont to fraternize, a statement often heard is: "Yes, I spent six (or two, or ten, or thirty) years down at 'Chuqui.' " This means Chuquicamata, the site in C
Jan 1, 1957
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Chuquicamata (9833af24-2507-4cbc-b9a9-4406055c4a6b)CHUQUICAMATA, as the Chile Copper Company's mine is known, has the largest developed deposit of copper ore in the world. Indeed, it is improbable that its equal will ever be found. The Union Mini
Jan 1, 1933
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Chuquicamata and Its Modernization Plan: Back to the Major LeagueBy Juan H. Rojas
The Chuquicamata mining and metallurgical complex is the main division of CODELCO-CHILE. Its comparative advantage in the world of primary copper producers had deteriorated severely and, consequently,
Jan 1, 1998
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Chuquicamata Develops Better Method to Evaluate Core Drill Sludge SamplesBy Glenn C. Waterman
THE diamond drill is a very important tool in exploration and development testing and its use is increasing. In almost all cases results of diamond drilling are analyzed on the basis of grade and tons
Jan 1, 1955
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Chuquicamata subterránea: el despertar de un gigante minero de clase mundial hacia la modernidadBy Juan Carlos Zevallos
El presente artículo da cuenta de la puesta en marcha, en agosto de 2019, del proyecto que convirtió a Chuquicamata —una de las minas open pit de cobre más grandes y antiguas de Chile— en una ejemplar
Oct 30, 2020
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Chuquicamata Sulphide Plant: Concentrator DesignBy E. F. Raffo
THE design of the Chuquicamata concentrator offered an unusual combination of problems, all of which had, in one way or another, a definite effect upon the final arrangement of all the equipment and n
Jan 1, 1952
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Chuquicamata Sulphide Plant: Concentrator OperationBy D. S. Sanders, E. W. Witcomb
FLOTATION tests, from which the flowsheet for the concentrator was determined, were made in a pilot mill at Chuquicamata and later comparative testing of full size flotation cells was done at the Ande
Jan 1, 1952
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Chuquicamata Sulphide Plant: Crushing SectionBy A. P. Svenningsen
IN the early stages of design it was not considered necessary that separate crushing plants be built for the new sulphide concentrator and smelter until sometime in the future. The plan was to use the
Jan 1, 1952
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Chuquicamata Sulphide Plant: Electrical DistributionBy Stanley F. French
ELECTRICAL power and distribution for the sulphide ore plant is an addition and extension of the existing power system which has served the oxide reduction plant since its inception in 1914. The power
Jan 1, 1952
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Chuquicamata Sulphide Plant: PipingBy J. P. Manning
UNQUESTIONABLY, the outstanding feature of the piping for the sulphide plant is the large amount which had to be done in almost every size from instrument tubing to 84 in. OD pipe. In this article th
Jan 1, 1952
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Chuquicamata Sulphide Plant: SmelterBy H. G. Dwyer
CONSIDERATION for future expansion influenced the design of the new smelter at Chuquicamata. The section of the smelter now going into operation, while large, represents only little more than half of
Jan 1, 1952
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Chuquicamata Sulphide Plant: Smelter StacksBy Clarence W. Dunham
BECAUSE of the earthquakes that occur at Chuquicamata, the design of the smelter stacks constituted the most difficult structural problem of the entire sulphide ore project. Slight tremors occur almos
Jan 1, 1952
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Chuquicamata Sulphide Plant: Tailing DisposalBy R. M. Kuralt
CONCESSION from the Chilean government granting the company use of the Rio Salado water stipulates that a minimum of 35,000 metric tons of such salty water must be diverted from the Salado daily, and
Jan 1, 1952