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Leaching Of Copper Silicate Ore With Aqueous Ammonium CarbonateBy R. F. Frantz, T. P. McNulty
The upper-level mineralization of the din Buttes, Arizona copper orebody consists primarily of dilute copper silicate impregnation in fault clay and throughout the altered limestone hostrock. Cuprite
Jan 1, 1973
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Leaching of Copper SulphidesBy Marko Lampi, Marc Nicolle, Janne Karonen, Kari Valkama
"In the ten years from 2003 to 2013 global mine production of copper has increased by over 23% to meet demand while the weighted average head grade has dropped from 0.9 to 0.7% Cu. These divergent tre
Jan 1, 2015
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Leaching of Dominican gold ores in iodide-catalysed thiocyanate solutionsBy S. P. Ball, A. J. Monhemius
In a laboratory study under acidic oxidising conditions, the thiocyanate system gave results at least as good as cyanide and considerably better than thiourea, with modest consumption of SCN (less tha
Dec 1, 1995
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Leaching Of Gold And Silver From A Kupol Composite Sample: Assessment Of The CANMET Enhanced Leaching Process (CELP)By G. Deschênes
In an earlier study (Deschênes et al., 2009), gold and silver were shown to be efficiently extracted from samples taken from the Kupol Mine in Russia using lead nitrate in a cyanide leach system. In t
Jan 1, 2010
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Leaching Of Gold And Silver From Kupol Composite Sample: Part II - Assessment Of The Celp - Preprint 09-048By G. Deschênes
In Part I of the work, gold and silver were shown to be efficiently extracted from Kupol samples using lead nitrate in a cyanide leach system. In Part II, a comparison of the technical and economic me
Jan 1, 2009
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Leaching of Gold and Silver from Pyrite and ItÆs Calcine with Aqueous Cyanide and ThioureaBy Lawson F
Pyrite concentrate and calcine from the Nanjing Lead-Zinc-Silver Mines, China, were leached with aqueous cyanide and thiourea solutions. More than half of the contained gold and silver was able to be
Jan 1, 1987
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Leaching of Gold and Silver with Ferricyanide-cyanide SolutionBy F. Xie
Low gold and silver leaching kinetics has been commonly observed in traditional gold-silver cyanidation process, especially in those heap-leaching operations. The reactivity and availability of oxidan
Jan 1, 2014
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Leaching of Gold from Waste Printed Circuit Boards in an Iodine-Iodide Solution and Regeneration of the Spent LixiviantBy Kazutoshi Haga, Atsushi Shibayama, Altansukh Batnasan
The objectives of this study were to propose a viable alternative method for recovery of precious metals such as gold (Au), silver (Ag) and palladium (Pd) from waste printed circuit boards (WPCBs) and
Jan 1, 2018
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Leaching of gold ore using creatine monohydrateBy K. Barani, S. M. S. Ganji
Creatine was used as a lixiviant for gold dissolution from gold ore. The effects of creatine concentration, temperature, leach time, and pH were examined for their influence on extent of gold dissolut
Apr 14, 2024
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Leaching of Indium from ITO Present in Amorphous Silicon Photovoltaic ModulesBy Jorge A. S. Tenorio, Pedro F. A. Prado, Denise C. R. Espinosa
There is an increasing challenge of waste management regarding the growth of photovoltaic (PV) technology. Often overlooked by its environmental benefits of greenhouse gas emission reduction, PV techn
Mar 1, 2018
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Leaching Of Low Grade Gold Ores - Economic Evaluation Of Available Processes (5a856ec2-3f47-417b-8da8-c5dd7efc3a10)By F. Milton Lewis
Several alternatives are available for treating lover grade gold ores averaging 0.04 to 0.10 ounce per ton. These include heap, vat and agitation leaching and may involve conventional zinc precipitati
Jan 1, 1974
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Leaching of Metal Sulphide Concentrates at Atmospheric Pressure Using SO2/O2 MixturesBy Matthew I. G
A new process for leaching zinc sulphide concentrates with gaseous mixtures of SO2 and O2 in aqueous solution is described.The reaction of SO2/O2 with Rosebery, Mt. Isa, Broken Hill and Elura zinc con
Jan 1, 1981
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Leaching of Metals and Nonmetals from Phosphogypsum Stacks Using Synthetic Rainwater as the Leaching AgentBy Bernard Scheiner
A number of wells were drilled at two phosphogypsum stacks, one at P-21 owned by IMC and the other at Agrico's South Pierce Stack. Each well was sampled, and composites representing 5-ft incremen
Jan 1, 1999
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Leaching Of Mixed Oxide/Sulfide Copper Ores And The Skrinking Core ModelBy R. J. Roman
The results of column leaching tests on 3 different mixed oxide/sulfide ores from a Chilean deposit are presented. The 3 samples contained different ratios of oxide copper minerals to chalcocite and c
Jan 1, 1993
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Leaching of Nickel and Cobalt from Low-grade Nickel Laterite Ores Using Organic Acids by Aspergillus Niger ExcretedWith shortage of sulfide nickel ores, laterite ore was paid more attention by scientists. Because its grade is commonly lower than sulfide nickel ores, laterite ore can not be utilized effectively be-
Jan 1, 2014
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Leaching Of OxidesBy Fathi Habashi
OXIDE ORES can be divided into two groups: 1) Simple oxides (Table 3.1). 2) Complex oxides. Those ores containing minerals composed of two oxides; an acid oxide (Cr2O3, Nb2O5, etc.), and a basic
Jan 1, 1970
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Leaching Of Petroleum Catalysts With Cyanide For Palladium RecoveryBy P. L. Sibrell
The U.S. Bureau of Mines has tested cyanide leaching for recovery of palladium (Pd) from spent petroleum processing catalysts. Three different catalyst samples were supplied by a spent-catalyst proce
Jan 1, 1995
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Leaching Of Primary Sulfide Ores In Sulfuric Acid Solutions At Elevated Temperatures And PressuresBy D. L. Leach
This report covers laboratory experiments simulating in situ copper recovery from primary sulfide ores in sulfuric acid systems pressurized with oxygen. Copper extraction and acid consumption data are
Jan 1, 1975
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Leaching Of Rare Earth Elements From Bentonite Clay - SynopsisBy J. G. van der Watt
Due to increasing concerns of global rare earth element shortfalls in the near future, possible alternative sources of rare earth elements have recently become of economic interest. One such alternati
Jan 1, 2012
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Leaching of Rare Earth Elements from Phosphogypsum (By-Product of Phosphate Fertilizer Production)By M. Walawalkar, C. K. Nichol, G. Azimi
Rare earth elements (REEs) are essential to the production of technologically advanced products, including wind turbines, electric and hybrid cars, automotive catalytic convertors, hand held electroni
Jan 1, 2016