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Separation of Hematite by Hysteretic Repulsion (70aeee02-5a4b-4b00-bcef-c184400ae993)By E. W. Schilling
THE-separation of hematite by hysteretic repulsion was first brought to the attention of the public in 1922, by W. M. Mordey1. Three-years later another paper2 was published and after another four yea
Jan 1, 1936
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Separation Of Individual Plastics From Mixtures By Gravity Separation ProcessesPlastics recycling has become an established national industry in Korea. However, it is still in its infant stage and experiences growing pains. In Korea, mixed plastic wastes generated from household
Jan 1, 2006
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Separation of Iron (III) and Nickel (II) from Acidic Sulfate Leaching Solution of Molybdenum-Nickel Black ShaleBy Zhigan Deng
Cooling crystallization was used to separate iron (III) and nickel (II) from acidic sulfate solution produced by leaching of molybdenum-nickel black shale. The effect of K2SO4 concentration, crystalli
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Separation of Iron from a Zinc Sulphate Electrolyte by Combined Liquid-Liquid Extraction and Electro-Reductive StrippingBy K. Verbeken, E. Wettinck, M. Verhaege
Iron (III) can easily and selectively be removed from acidic sulphate solutions with organo-phosphoric acids like Di-2-Ethyl-Hexyl-Phosphoric Acid [D2EHPA]. Stripping of the iron (III) loaded organic,
Jan 1, 2000
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Separation of Iron Particles from Banded Haematite Quartzite (BHQ) Ore by Selective Magnetic CoatingSeparation of Iron Particles from Banded Haematite Quartzite (BHQ) Ore by Selective Magnetic Coating The separation of fine iron particles from banded hematite quartzite (BHQ) has been studied using
Sep 13, 2010
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Separation Of Iron-Rich Impurity Particles From Molten Aluminum By Induced-Alternating Magnetic FieldBy G. C. Yao
Branch and needle-shaped intermetallic compounds of iron, silicon and aluminum normally exist in the molten aluminum. If a suitable amount of manganese metal is added into molten aluminum, the shape o
Jan 1, 2003
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Separation Of Iron-Rich Impurity Particles From Molten Aluminum By Induced-Alternating Magnetic Field (0a0d4cc6-f48a-4805-a5d2-419efded562e)By G. C. Yao
Branch and needle-shaped intermctallic compounds of iron, silicon and aluminum normally exist in the molten aluminum. If a suitable amount of manganese metal is added into molten aluminum, the shape o
Jan 1, 2003
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Separation of KCl values from Canadian sylvinite and carnallite potash ores by selective flocculationBy S. A. Beeson, C. Poole
"This paper reports on the development of selective flocculation processes for the direct recovery of KCl values from low-grade Canadian sylvinite and carnallite potash ores.Two reagent suites, consis
Jan 1, 2000
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Separation of Kimberlite from Waste Rocks using Sensor-Based Sorting at Cullinan Diamond MineBy N. Moemise, M. B. Shongwe, P. A. Olubambi, M. M. Ramakokovhu
"Near-infrared (NIR) spectroscopy sorting technology is incorporated in an automated optical mineral sorter that can discriminate between materials using the differences in characteristics when expose
Jan 1, 2016
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Separation of Lanthanum from a Rare Earth Chloride Mixture Using a Multistage Mixer-SettlerBy Martin G. Castro, Renato G. Bautista, Morton Smutz
During the last 25 years, multistage mixer-settlers have been used extensively for liquid ion exchange work. The mixer-settler has the advantage of being a compact device in which a large number of st
Jan 1, 1972
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Separation of Lead from Chalcopyrite Slurry Using Resin-in-PulpBy Weng Fu
In this study, Resin-in-Pulp (RIP) technology is used to separate Pb from a chalcopyrite slurry. Solvent-impregnated resin, Lewatit® VP OC 1026, which contains di(2-ethylhexyl) phosphoric acid (D2EHPA
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Separation of Lead, Zinc, and Antimony OxidesBy Richard Divine
IN the Parkes process of extracting precious metals from lead, zinc is added to the molten lead containing gold, silver, copper, and, some antimony. These metals, with the exception of antimony, form
Jan 8, 1914
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Separation Of Light Weight Materials With The Double Trommel Low-Pressure SeparatorBy S. Schade-Dannewitz
In terms of a sustainable waste management, high recycling rates and purities of the different collected waste components are very important. Especially the recycling of used packaging materials with
Sep 1, 2012
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Separation of Magnetic Minerals by a Linear Motor DeviceBy F E. Grader
A linear motor properly wound can serve as a mechanism for separating paramagnetic sulphide minerals, like pyrrhotite, from other sulphides and associated gangue minerals. The effectiveness of separat
Jan 1, 1980
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Separation Of Magnetic Minerals By A Linear Motor Device (550d76f3-26bc-4160-b0b2-e11bb8a40ec4)By Grader F. E
A linear motor properly wound can serve as a mechanism for separating paramagnetic sulphide minerals, like pyrrhotite, from other sulphides and associated gangue minerals. The effective- ness of se
Jan 1, 1980
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Separation of Marmatite from Pyrrhotite using Sodium Dimercapto Propyl Sulfonate (SDMP) as a DepressantMercapto organic compound SDMP was used as a depressant for separation of copper activated marmatite from pyrrhotite in the presence of butyl xanthate. Flotation results show that SDMP has strong depr
Jan 1, 2006
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Separation Of Metals From Waste Incineration Residue By Application Of Mineral ProcessingBy G. Schmelzer
The disposal and reintroduction into recycling of residues produced by today's industrial society is not only a problem of much public debate in the countries concerned but also an increasingly p
Jan 1, 1995
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Separation of Metals in Aqueous Solutions by Ion ExchangeBy A. Himsley
"There is an ever-increasing demand these days for efficient methods of removing metals from solutions especially for selectively recovering a particular metal from a mixture of metals in solution.Up
Jan 1, 1975
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Separation of Minerals Using Electrical FieldsSeparation of Minerals Using Electrical Fields The mineral processing industry requires alternative separation techniques to help deal with rising energy costs and decreasing ore grades. Dielectropho
Sep 13, 2010
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Separation Of Minor Elements In Copper Smelting Using Top Submerged Lancing TechnologyBy K. R. Robilliard
Ausmelt Technology has been developed to process copper concentrates containing significant levels of lead, arsenic and antimony. A process was developed aimed at smelting these concentrate materials
Jan 1, 1995