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Pyrometallurgical Research At SINTEF And NTNU In NorwayBy E. Ringdalen
Keywords: Pyrometallurgy, research, Norway, SINTEF, NTNU The Norwegian Ferro-alloy Industry and the model for research cooperation between SINTEF, NTNU, and the Norwegian ferro-alloy industry is p
Jan 1, 2011
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Pyrometallurgical Studies for Manganese Extraction Using Turkish Ore ReservesBy Ender Keskinkilic
Pyrometallurgical studies conducted for Mn extraction using Turkish Mn-ore reserves were reviewed. Turkish Mn-ores are low-grade ones having *30% Mn. The most important Mn ore reserves in Turkey are i
Mar 1, 2017
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Pyrometallurgical Treatment Of Copper Tank House SlimesBy G. G. Barbante
Copper anode slimes are a valuable source of the precious metals, and selenium and tellurium. They are mineralogically complex and this has led to a great variety of process flowsheets for treating th
Jan 1, 1994
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Pyrometallurgical Treatment of Flue Dust from Copper Smelters for Stabilization of Va Elements and Cu RecoveryBy Carrasco .. P. J. A., R. Parada, I. Saavedra, F. Parada, R. Parra, E. Balladares
In most of the smelters, the management of flue dust has a double objective: the control of minor elements in the anodes and the management of volatiles compounds that can cause contamination due to f
Jan 1, 2011
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Pyrometallurgical Treatment Of Ilmentite And Zircon Concentrates To Obtain Ceramic MaterialsBy M. Manrique
Various pyrometallurgical methods for treating Ilmenite and Zircon concentrates are reviewed. Laboratory experiments, using a thermal plasma reactor, have been performed to evaluate: the conversion of
Jan 1, 1996
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Pyrometallurgical treatment of nickel smelting slag with biocharBy L Klemettinen, A Jokilaakso, D Attah-Kyei, P Taskinen, M Tiljander, D Sukhomlinov, D Lindberg
In this study, the use of carbon neutral biochars as reducing agents in the pyrometallurgical treatment of nickel slag was investigated at 1400°C in order to recover valuable elements such as copper a
Jun 19, 2024
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Pyrometallurgy - VolatilizationUS 4,190,434 - In the thermal production of magnesium metal, a mixture of calcined dolomite, an iron- silicon-aluminum alloy as a reductant, and residual slag from the production of ferrochromium is s
Jan 1, 1982
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Pyrometallurgy At MintekBy T. R. Curr, R. T. Jones
Keywords: Pyrometallurgy, Mintek, DC arc furnace, plasma, smelting, chromite, ilmenite, cobalt, slag, zinc fuming, dust, magnesium, laterite, ferronickel, arc modelling, Pyrosim, thermodynamics Th
Jan 1, 2006
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Pyrometasomatic Deposits Of The Washington Camp -Duquesne District, Santa Cruz County, ArizonaBy Norman E. Lehman
INTRODUCTION The Washington Camp - Duquesne mining district is located on the east flank of the Patagonia Mountains, 98 kilometers south of Tucson and within 5 kilometers of the International border
Jan 1, 1977
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Pyrometer Porcelains And RefractoriesBy R. W. Newcomb
THE constancy of calibration, and to a great extent the life, of a thermoelement is dependent on the suitability of the primary protecting tube in which the wires are mounted, particularly when used a
Jan 9, 1919
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Pyrometry in Blast-furnace Work - DiscussionA. L. FIELD, Cleveland, Ohio (written discussion*.-)In equation 2, B is used to denote the ratio of bases (lime plus magnesia ) to acids (alumina plus silica) it being stated that this ratio gives m
Jan 12, 1919
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Pyrophyllite (38023a48-5ec6-4028-9d96-c26bf6275cc9)By C. S. Thompson, P. A. Ciullo
Pyrophyllite is a naturally occurring hydrous aluminum silicate with the molecular formula SiO,,AI,,(OH), or, as more commonly expressed, the oxide formula A120,~4Si02~H20. Pyrophyllite is rarely
Jan 1, 1994
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Pyrophyllite Dust-Its Effect and ControlBy M. F. Trice
PYROPHYLLITE is a hydrous aluminum silicate (A12Si4010(OH)2)1 that occurs in both the foliated and the massive forms. The foliated variety resembles talc in that it has a greasy feel, a pearly luster,
Jan 1, 1940
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Pyroridrolysis of Nickel Chloride Solution in a 30-Inch Diameter Fluidized-Bed ReactorBy Mahesh C. Meyer Jha
AMAX has developed a chloride refining process to produce pure nickel and cobalt metals from mixed sulfide .precipitates, Metal chloride solutions, generated in a hydrochloric acid leaching step and p
Jan 1, 1985
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Pyrrhotite - The Matrix of Nickel Sulphide MineralizationThe economic significance of a fundamental understanding of the mineral pyrrhotite is dis- cussed. Particular emphasis is placed on the relationship of other sulphide minerals to the pyrrhotite whe
Jan 1, 1972
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Pyrrhotite Flotation and its Selectivity Against Pentlandite in the Beneficiation of Nickeliferous Ores: An Electrochemistry PerspectiveBy H. R. Manouchehri
"Pyrrhotite (Po) is one of the most abundant sulfide minerals in processing industry and must be rejected in most cases. Particularly, Po rejection and its selectivity against pentlandite (Pn) have lo
Jan 1, 2015
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Pyrrhotite Rejection at Strathcona Mill - DETA/SMBS Plant TrialsBy J. Coffin, R. Multani, C. Deredin
Glencore’s Strathcona Mill has recently evaluated a pyrrhotite depressant combination of diethylenetriamine (DETA) and sodium metabisulfite (SMBS) to improve its overall plant pyrrhotite- pentlandite
Jan 1, 2019
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Pyrrhotite Rejection at the Strathcona MillBy J. Coffin, M. Muinonen, D. Fragomeni, R. Multani, C. Deredin
"Rejection of pyrrhotite from pentlandite is of critical importance to the economics of nickel concentrate production and the main goal of the Strathcona milling operations. A joint team of XPS, Glenc
Jan 1, 2018
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Pyrrhotite ù An Important Gangue and a Source for Environmental PollutionBy W T. Yen
Pyrrhotite crystallises as either a hexagonal or monoclinic structure, both of which can occur in ore deposits. In general, pyrrhotite is not considered as a valuable mineral unless it contains consid
Jan 1, 2002
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Pyrrhotite-Grinding Media Interaction And Its Effect On Floatability At Different Applied PotentialsBy Katerina Adam
During wet grinding the electrochemical interactions between grinding media and pyrrhotite not only accelerate the media wear but also adversely affect the flotation response of the sulfide mineral. A
Jan 1, 1984