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Use of Solvent Extraction to Remove Bismuth and Antimony from Copper Electrolyte at the San Manuel RefineryBy Daniel K. Kim
The charge for the copper refinery is a mixture of anodes produced at San Manuel from BHP source concentrate and copper purchased from external sources. Control of unwanted impurities in the tankhouse
Jan 1, 1998
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The Effect of High Gas Flowrates On the Performance of a Counter-Current Reaction' Launder (CCRL) Process for Metal RefiningBy K. Narayana Swamy
Experimental results of 3-phase mixing in a physical model of a CCRL for metals refining, at high levels of bottom gas injection (up to a superfIcial gas velocity (Us) of 12.5 cm/min), are presented.
Jan 1, 1996
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Preparation of Nickel Sulfate from Ni-P-Fe SlagBy Zhang Hengzhong
Ni-P-Fe slag is the by-product in the production of phosphate fertilizer in blast furnace with nickel contained serpentine ore as the raw material. It contains nearly 5-7% Ni, 65-7( Fe, and 10-12% P.
Jan 1, 1993
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Treatment Of Acid Mine Drainage Containing Iron Ions And Arsenic For Utilization Of The SludgeBy Hiroshi Nakazawa
An acid mine drainage in abandoned Horobetsu mine in Hokkaido, Japan, contains arsenic and iron ions; total arsenic ca.10ppm, As(III) ca. 8.5ppm, total iron 379ppm, ferrous iron 266ppm, pH1.8. Arseni
Jan 1, 2006
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Fluidity of Silicate Slags from a Hazardous Waste IncineratorBy Zhijing Zhang
The management of hazardous wastes is important in a society which is increasingly concerned with environmental issues. Incinerators such as the slagging rotary kiln are widely used in the treatment o
Jan 1, 2002
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Copper and Zinc Recovery with Emulsion Membranes from Mine Waste WatersBy G. L. Hundley, D. N. Nilsen
The U.S. Department of Energy investigated the use of liquid-emulsion membranes (LEM) for the selective removal and recovery of metals such as copper and zinc from mine waste waters. This investigatio
Jan 1, 2000
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Quantitative Microscopic Analysis of a Sulfide Flotation Circuit --An ExampleBy Steve Naruk
Microscopic point-count analyses, although time-consuming, provide detailed mineralogical information which is not obtainable by any other means. Such information can be invaluable for evaluating mill
Jan 1, 1981
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Recovery Of Yttrium And Neodymium From Copper Pregnant Leach Solutions By Solvent ExtractionBy J. Brent Hiskey, Rebecca Grace Copp
The solvent extraction of yttrium and neodymium from copper pregnant leach solutions (PLS) using Primene JM-T, a primary aliphatic amine, has been studied. Effect of contact time, pH, sulfate concentr
Jan 1, 2016
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Diffusion and Equilibrium in Vapometallurgical Refining of NickelBy Y. K. Rao
In the carbonyl process for the refining of crude nickel CO(g) reacts with nickel in the 310-370K range producing nickel tetracarbonyl, Ni(C0)4(g). Iron and cobalt impurities also form gaseous carbony
Jan 1, 1993
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Application of Solvent Extractions and Solvent-Impregnated Support to the . Treatment of Effluents from Electroless Nickel Plating ProcessesBy Mikiya Tanaka
This paper outlines our attempt to establish a recycle process of nickel in the spent baths and waste rinse water of electroless nickel plating plants using solvent extraction and solvent-impregnated
Jan 1, 2003
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Overview of Industrial Energy Training and SoftwareBy Cynthia Belt
"Before energy can be saved in the materials industry, the process must be understood. At the same time, baby boomers are starting to retire. New people are entering the field without experience and t
Jan 1, 2013
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Kinetics Study On The Pyrolysis Of Low Grade CoalsBy Ruiling DU, Xiao YUAN, Keng Wu, Daan XU, Changyao CHAO
To utilize low grade coals to produce high quality semi-coke which can be used in blast furnaces, the pyrolysis of low grade coals was studied in this paper. According to the characteristics of coal p
Jan 1, 2016
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Selective Extraction of Titanium From Titaniferrous Minerals Via a Novel Fluoride RouteBy M. D. Stephens
A new, one-step process for extracting titanium from titaniferrous materials has been demonstrated. In the process, depleted uranium tetrafluoride (DUF 4), a solid, is mixed with ilmenite (FeTi03) and
Jan 1, 2001
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Secondary Lead Smelting at East Penn Manufacturing Co., Inc.By Richard A. Leiby
The recycling of lead-acid batteries in the United States has become a challenge as to how to balance ever increasing environmental regulation and cost with efficient operations. East Penn's cap
Jan 1, 1993
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Thermodynamic Investigation of the Stability of HgTe as Related to the Recovery of Mercury from Copper Smelter Acid-Plant Sludge Using a Vacuum Retort ReactorBy Devon A. Hannan
Thermodynamic modeling calculations were undertaken for the recovery of mercury from HgTe using a vacuum retort reactor. However, discrepancies were noted in the available thermodynamic data which int
Jan 1, 2003
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Direct-to-Blister Copper Smelting with the ISASMELT ProcessBy Michael Somerville, Paul Voigt, Chunlin Chen, Alistair Burrows
To date, many types of primary concentrate have been smelted using the ISASMELT™ technology, with annual smelting of copper concentrate alone exceeding 7 million tonnes. Most of this material could be
Mar 1, 2017
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Properties and Constitution of AsbestosBy Tibor Zoltai
Asbestos is a generic term for industrially useful fibers recovered from exploitable deposits of the asbestiform varieties of five silicate minerals: chrysotile, anthophyllite, actinolite-tremolite, c
Jan 1, 1989
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Synthesis and Carbon Dioxide Adsorption of Zeolitic Imidazolate FrameworksBy Huimin Lu, Min Li, Jinghua Zou
"Zeolitic imidazolate frameworks (ZIFs) are new type of porous materials, form inerratic polyhedral in three-dimensional with large cages and small apertures, and appear structural diversity. Their ho
Jan 1, 2010
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Electrolytic Extraction of Magnesium from Commercial Aluminum Alloy ScrapBy Basant L. Tiwari
An electrolytic process, based on a three-layer concentration cell, to extract magnesium from commercial aluminum alloy scrap has been examined. The process was repeatedly tested at 1025 K with two ce
Jan 1, 1985
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Semi-discrete Dynamics and Simulation of Peirce-Smith ConvertingBy A. Navarra
Peirce-Smith converting (PSC) is applied for roughly 50% of primary nickel and 70% of primary copper production. PSC cycles produce batches of ironfree sulfide matte (or blister copper, in the case of