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Molten Salt Process for Debismuthising LeadBy Denholm WT
The Dittmer process for the debismuthising of lead by electrolysis beneath molten caustic soda has been scaled up to 100 kg lots for batchwise operation and to 20 kg per hour for a continuous flow
Jan 1, 1975
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Molten Salt Processing of Radioactive WasteBy J. J. Moore, B. Mishra, D. L. Olson
The production of radioactive and reactive metals, such as plutonium, uses various pyrometallurgical techniques that generate significant quantities of waste salts contaminated with hazardous, reactiv
Jan 1, 1995
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Molten slag flow in an ironmaking blast furnace – a mesoscopic level investigationBy D Sert, A Jayasekara, P Gardin, B J Monaghan, S J. Chew, P Zulli, D Pinson, X F. Dong, R Ferreira
In an ironmaking blast furnace (BF), molten slag and hot metal form in the softening-melting (cohesive) zone and then trickle through the coke packed bed before being discharged from the taphole. Duri
Jun 19, 2024
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Moly Plant Design Considerations - Preprint 09-136By P. Amelunxen
This paper presents the authors? personal experiences in the design and operation of moly separation circuits in copper-moly concentrators. Topics discussed include column cells versus mechanical cel
Jan 1, 2009
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Moly Upgrading Profiles with Flotation ColumnsBy R. Amelunxen
"The molybdenite associated with copper porphyry ores is generally treated in a flotation circuit consisting of a separation and a cleaning section. In the last few years column flotation cells have r
Jan 1, 1990
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Moly-Cop Tools Applications for the Assessment of Grinding Media Performance at Full Industrial ScaleBy J. E. Sepulveda, R. Morrow
"The Linear Wear Theory provides a reliable framework for the assessment of grinding media performance at full scale. This theory can be applied for analyzing grinding media consumption rates in any g
Jan 1, 2014
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Molybdenite Behaviour in the Flotation Process of Assarel ConcentratorBy N. Kolev, M. Poibrenski, I. Nishkov
"The following paper examines the flotation of copper porphyry ores in Assarel concentrator with focus on the reasons for low molybdenum recovery in the final copper concentrate. The copper-porphyry o
Jan 1, 2016
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Molybdenite Concentrate Purification by a Continuous Sulfation‑Leaching ProcessBy I. WILKOMIRSKY, J. BECKER, F. Parada
Purification of molybdenite concentrate from copper concentrates was performed by sulfation. The sulfation of molybdenite concentrates was carried out with pure sulfuric acid (> 96%) at 160–190 °C to
Jun 14, 2022
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Molybdenite Depression by Shear Degraded Polyacrylamide SolutionsBy S. H. Castro
Molybdenite depression by shear degraded polyacrylamide solutions has been investigated. Aqueous solutions of polyacrylamide-type flocculants were subjected to shear degradation under a range of high-
Jan 1, 2004
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Molybdenite Flotation by Controlling Pulp PotentialBy M. Kolahdoozan, H. Noori
"Molybdenite flotation at the Sarcheshmeh Copper Complex has been studied as a function of pulp potential controlled using two types of sodium sulfide (mineral and chemical origin). Air and either pla
Jan 1, 2006
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Molybdenite flotation from copper/molybdenum concentrates by ozone conditioningBy M. R. Yalamanchili, W. H. Jang, Y. Ye, J. D. Miller
Typically, rougher molybdenite flotation and recovery from bulk copper/molybdenum concentrates involves the use of alkalisulfides, Nokes reagents, cyanides, oxidants, and/or thermal treatment to depre
Jan 1, 1991
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Molybdenite Flotation From Copper/Molybdenum Concentrates By Ozone Conditioning (db26685c-10b3-4bd2-b48c-69e9624125ef)By Y. Ye
Typically, rougher molybdenite flotation and recovery from bulk copper/ molybdenum concentrates involves the use of alkalisulfides, Nokes reagents, cyanides, oxidants, and/or thermal treatment for the
Jan 1, 1990
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Molybdenite Flotation Reagent Development At Climax, ColoradoBy O. A. Kiehn, C. A. Born, F. N. Bender
Development of the flotation reagent scheme at Climax Molybdenum Company's mine at Climax Colorado is reviewed. Features of the mineralogy, milling practice and background of reagent changes are
Jan 1, 1976
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Molybdenite Flotation Reagent Development at Climax, Colorado (ec999d2c-e546-433d-b24c-1fbb1a1629db)By R. Woods, O. A. Kiehn, C. A. Born, F. N. Bender
Development of the flotation reagent scheme at Climax Molybdenum Company's mine at Climax Colorado is reviewed. Features of the mineralogy, milling practice and background of reagent changes are
Jan 1, 1976
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Molybdenite in CanadaBy H. H. Claudet
PROBABLY the first flotation mill for treating molybdenite ores was put into operation .in Norway during 1913, when the writer was employed to introduce and apply the Elmore vacuum flotation process a
Jan 1, 1944
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Molybdenite Operations at Climax, ColoradoBy D. F. Haley
THE molybdenite deposits at Climax, Cool., have recently attracted considerable notice, because of their great size, as compared with other known deposits of the same mineral. Climax station, on the.
Jan 8, 1918
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Molybdenite Polytypism and its Implications for Processing and Recovery: A Geometallurgical-Based Case Study from the Bingham Canyon Mine, UtahBy C. R. McClung
"Molybdenum, in the form of molybdenite, is a common byproduct of many copper mining and concentrating operations. Contrary to most copper sulfide minerals where recovery is principally liberation con
Jan 1, 2016
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Molybdenite Polytypism and Its Implications for Processing and Recovery: A Geometallurgical- Based Case Study from the Bingham Canyon Mine, UtahBy R. Craig McClung
Contrary to other sulfide minerals, where recovery is principally liberation controlled, the recovery of molybdenite is more complex. It is this complexity that initiated a geometallurgical investigat
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Molybdenite Polytypism and its Implications for Processing and Recovery: A Geometallurgical-Based Case Study from Bingham Canyon Mine, UtahBy C. R. McClung
"Molybdenum, in the form of molybdenite, is a common byproduct of many copper mining and concentrating operations. While the recovery of most copper sulfide minerals is principally liberation controll
Jan 1, 2016
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Molybdenite Recovery At Cuajone - IntroductionBy Donald M. Podobnik
The Cuajone Concentrator of the Southern Peru Copper Corporation is located approximately 900 kilometers southeast of Lima, Peru, near the 500 year old town of Moquegua, in an area that has been occup
Jan 1, 1981