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Recovering Carbon From Anthracite Using Hindered Settling ColumnBy J. Kim, H. Cho
The objective of the experiment was to investigate the efficiency of hindered-settling column in recovering carbon from anthracite. Two types of Korean anthracites were prepared for feed materials. Ea
Jan 1, 2002
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Recovering Fine-Size Coal From Alabama Washer Wastes Using Humphreys SpiralBy James S. Browning
In 1975 bituminous coal and lignite production in the United States reached an all-time high of 637 million tons, an increase of 6 percent over production in 1974. The output, valued at $11.9 billion
Jan 1, 1977
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Recovering Gold From Carbon Fines By Gold Transfer ProcessBy E. M. Hill, H. K. Lin, J. L. Oleson
When activated carbon is used for recovering gold in gold industry, carbon fine materials are generated in stripping, acid-washing and kiln regeneration circuits. The carbon fines at the Fort Knox mi
Jan 1, 2002
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Recovering Minerals And Energy From Industrial WastesBy R. Conor, O&apos
Wastewater treatment systems, both industrial and municipal, produce large quantities of sludge which require disposal. Sludge disposal poses significant environmental liabilities, logistical problems
Jan 1, 1999
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Recovering Rare Earths from Waste Phosphors using Froth Flotation and Selective FlocculationBy G. Mei
"This study explores froth flotation and selective flocculation methods to recycle waste phosphors containing several rare earth elements, namely, yttrium (Y), europium (Eu), cerium (Ce) and terbium (
Jan 1, 2017
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Recovery And Marketing Of Coproduct Baddeleyite By Palabora Mining Co., Ltd.By H. F. Anderson
The Palabora Mining Company Ltd. is probably best known for its production of copper since 1965. The success of the PMC mine lies in the outstanding technical and highly organized efficiencies applied
Jan 1, 1985
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Recovery And Removal Of Elemental Phosphorous From Electric Furnace SludgeBy J. Hanna, J. Jung, I. J. Anazia
Electrothermal production of elemental phosphorous (P4) generates substantial amounts of highly toxic phossy water and sludges. Because of their high phosphorous contents and lack of reliable processi
Jan 1, 1993
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Recovery And Removal Of Elemental Phosphorous From Electric Furnace Sludge (2e8bdc10-37d2-46eb-9387-22e51c11c12f)By Ibezim J. Anazia
Electrothermal production of elemental phosphorous (P4) generates substantial amounts of highly toxic phossy water and sludges. Because of their high phosphorous content and lack of reliable processin
Jan 1, 1991
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Recovery and Removal of Heavy Metal Elements Such as Uranium by Using Phosphate CompoundsBy Takashi Sakaguchi, Akira Nakajima
Some attempts were made to recover and remove heavy metal elements, such as uranium, copper and chromium, from aqueous systems by using several phosphate compounds. The phosphorylated derivatives of p
Jan 1, 1993
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Recovery And Separation Of Iron, Cobalt, And Nickel By Solvent Extraction From Waste Ferric Chloride SolutionBy T. K. Kim
Iron, cobalt, and nickel in waste ferric chloride solutions were separated from each other by solvent extraction. The iron was extracted from the cobalt and nickel by the use of methyl isobutyl ketone
Jan 1, 1980
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Recovery And Utilization Of Bottom Ash Magnetics For Coal Cleaning Medium - Preprint 09-002By R. Q. Honaker
Dense medium processes are used to clean over 50% of the coal that is fed into preparation plant facilities worldwide. The dense medium is formed using ultrafine magnetite which is recovered after the
Jan 1, 2009
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Recovery Enhancement in the Mercur Autoclave CircuitBy Robert M. St. Louis, Janet M. Edgecombe
The Mercur Mine's autoclave is an alkaline pressure oxidation system, operating at 220°(428°F) and 3061 kPa (444 psig) (total). Up to 725 metric tons (800 st) of ore, grading 2.02 g per mt (0.059
Jan 1, 1990
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Recovery Improvements Extend Reserves at Texasgulf’s Aurora Phosphate MineBy H. M. Breza
Recovery of phosphate concentrate at Texasgulf’s Aurora Mine has received increased attention as existing mine and plant production capacity limits are reached. Improved mining techniques and mineral
Jan 1, 1994
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Recovery Improvements To Extend Reserve Life And To Expand Mine Production PotentialBy H. M. Breza
Recovery of phosphate concentrate has received increased attention as the existing mine and plant production capacity limitations of the Texasgulf Inc. Aurora, North Carolina Mine are reached. Improve
Jan 1, 1994
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Recovery of "Lost" Gold with Vacuum TechnologyBy Jurgen H. L. Stuve, Rick E. M. Widelski
Any one who has been involved with the mining or the treatment of gold-bearing ores will agree that at the end of the total process, the quantity of gold recovered is never as much as was expected. Th
Jan 1, 1993
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Recovery of additional tungsten from Climax byproduct-plant tailingBy G. E. Burrer, D. Malhotra, T. E. Irwin, S. Johnson
Climax byproduct-plant tailing assayed 0.019% WO3. Pilot-plant and laboratory tests were performed to investigate the possibility of recovering additional tungsten values from the byproduct-plant tail
Jan 1, 1987
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Recovery Of Additional Tungsten From Climax Byproduct-Plant Tailing (dc443b03-d3e8-42c5-a119-b122b5f05c1e)By D. Malhotra
Climax byproduct-plant tailing assayed 0.019 percent WO3. Pilot-plant and laboratory tests were performed to investigate the possibility of recovering additional tungsten values from the byproduct-pla
Jan 1, 1985
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Recovery Of Aluminum By High Tension Separation ? IntroductionBy F. S. Knoll
The high tension process which separates materials based on relative differences in surface conductivity has been very successful in recovering non-ferrous metals from municipal waste. Aluminum is by
Jan 1, 1974
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Recovery Of Anthracite From Coal Preparation-Plant TailingsBy S. Subbarayan, S. Chander, M. S. Klima
A laboratory study was conducted to investigate the potential for recovering anthracite from coal preparation-plant tailings. The study included washability analyses, cyclone simulations and froth flo
Jan 1, 1996
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Recovery Of Anthracite From Preparation Plant TailingsBy M. S. Klima
Tests were conducted to investigate the potential for recovering anthracite from preparation plant tailings. Samples were collected from tailings streams or slurry ponds of several anthracite cleaning
Jan 1, 1995