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Iron precipitation in biohydrometallurgical operations: An overview of heap bioleaching of sulphide minerals, B. Oladipo, E. Govender-Opitz, and T.V. OjumuaBy B. Oladipo, E. Govender-Opitz, T. V. Ojumu
Bioleaching, one of the several important processes of biohydrometallurgy is an accepted technique for the extraction of desired metals from sulphide ores. Although the mechanism is well understood, t
Jan 1, 2020
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Iron Precipitation in Sulphuric Acid Under Pressure Oxidation Conditions at Elevated TemperaturesBy Rhulani F. Maluleke, Francis W. Petersen, John H. Marsh, Johann de T. Steyl, Allan Nesbitt
"Pressure leaching of chalcopyrite and nickeliferrous pyrrotite at temperatures between 105 and 200 ºC has been proposed as a potentially viable route for the extraction of mineral elements from sulph
Jan 1, 2003
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Iron Precipitation in Sulphuric Acid Under Pressure Oxidation Conditions at Elevated Temperatures (ABSTRACT PAGE)By Rhulani F. Maluleke, Francis W. Petersen, John H. Marsh, Johann de T. Steyl, Allan Nesbitt
"Pressure leaching of chalcopyrite and nickeliferrous pyrrotite at temperatures between 105 and 200 ºC has been proposed as a potentially viable route for the extraction of mineral elements from sulph
Jan 1, 2003
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Iron Purification at Teck Cominco's Trail OperationsBy W. A. Jankola
Teck Cominco Metals Ltd. operates an integrated zinc-lead smelter at Trail, British Columbia, Canada. The zinc circuit comprises three parallel operations: conventional fluid-bed roasting, direct zinc
Jan 1, 2006
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Iron Pyrites Deposits in Southeastern Ontario, - CanadaBy P. E. Hopkins
Introduction and History IN speaking of the economic geology of southeastern Ontario, W. G. Miller and C. W. Knight' say that "there occurs in southeastern Ontario a variety of minerals and rock
Jan 8, 1916
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Iron Recovery and Phosphorus Removal from Oolitic High-Phosphorus Haematite Using the FASTMELT® Process: A Comparative Study of Two ReductantsBy Y. Qin, X. Fu, T. Qi, H. Tang
"The FASTMELT ® process was developed as an alternative to blast furnace ironmaking; in this process, high-quality molten iron is produced using direct reduction followed by high-temperature slag/meta
Jan 1, 2017
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Iron Recovery From Copper Slag Through Oxidation-Reduction Magnetic Concentration At Intermediate TemperatureBy Yahui Feng, Zhiwen Wu, Chen Chen, Xin Hong
Large amounts of copper slag containing about 40 wt% iron is generated during the process of producing copper. Recovery of iron from the copper slag is very essential not only for recycling the valuab
Jan 1, 2015
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Iron Recovery in the Sumitomo Chlorine Leach Process for Copper ConcentratesBy M. Imamura
Sumitomo Metal Mining Co., Ltd. has developed a novel hydrometallurgical process for producing not only copper metal but also iron metal from copper concentrates. Because copper concentrates generally
Jan 1, 2006
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Iron Reduction in Copper Leach Liquors Using Controlled Precipitation of Sulfate Species during High Temperature Pressure Oxidation of Base Metal OresBy J. C. Gathje
Newmont's Phoenix Project is located near Battle Mountain, Nevada and is scheduled to produce copper concentrates containing high precious metal values. High temperature pressure oxidation (PDX)
Jan 1, 2006
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Iron Removal as Part of the Nickel Matte Leaching ProcessBy M. J. Latva-Kokko
This paper describes the behaviour of iron and the methods used for iron control in the nickel matte leaching process. OMG Harjavalta Nickel Oy processes approximately 10 000 t/y of iron, which enters
Jan 1, 2006
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Iron Removal from Kaolin by Using Organic Acids of Fungal FermentationBy M. E. Ramírez
In this research bioleaching or extraction of iron present in a kaolin from La Virgen mine, Anti-oquia/Colombia, was carried out. Organic acids produced in SF with Aspergillus niger were used in the p
Jan 1, 2014
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Iron Removal From Leachate By Limestone Precipitation And Direct Electrowinning Of CopperA study of iron-removal from copper leachate by limestone precipitation followed by direct eltctrowinning of copper has been conducted. The influence of the process parameters: amount of precipitant,
Jan 1, 1999
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Iron removal from relatively low grade silica using magnetic separationBy Mohammad Noaparast, Hamed Haghi
"In this research work, it was attempted to reduce the iron contents (Fe2O3) in relatively low grade silica sample which was obtained from Shenin silica mine, using magnetic separation. The prepared s
Jan 1, 2014
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Iron Removal from the MCLE CircuitBy H. Higuchi
The Sumitomo Metal Mining Company Ltd. (SMM) started to produce electrolytic nickel at the Niihama Nickel Refinery in 1939. In 1992, the conventional matte electrorefining process was converted to the
Jan 1, 2006
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Iron Removal From Turkish Quartz Sand By Chemical Leaching And BioleachingBy V. Arslan
The primary advantage of using oxalic acid is in the formation during leaching of soluble complexes that are both photo-chemically and microbiologically degradable. In this study, chemical leaching an
Jan 1, 2009
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Iron removal from wet-process phosphoric acid by sludge precipitationBy M. H. H. Mahmoud, T. A. El-Barbary, E. A. Abdel Aal, I. A. Ibrahim, A. K. Ismail
Fertilizer-grade phosphoric acid with a P2O5 concentration of 50% should contain less than 1.5% Fe2O3, otherwise, the P2O5 water solubility of the fertilizers prepared from high-iron acids will be low
Jan 1, 2000
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Iron Removal in the Skorpion ProcessBy E. A. Roux
As the first mine-to-metal zinc operation utilising atmospheric leaching, solvent extraction and electrowinning, Skorpion Zinc faces unique challenges and opportunities. One of these challenges is fou
Jan 1, 2006
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Iron Removal of Yaliköy Sand DunesBy Güven Önal, Zeki Dogan, Neset Acarkan
"In general, the processing of glass sand may involve comminution, washing, wet classification and attrition scrubbing. Additional processes may include magnetic separation, flotation and leaching in
Jan 1, 2003
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Iron Removal of Yaliköy Sand Dunes (10886b65-8653-411d-a43d-c1682f2c69e7)By Güven Önal, Zeki Dogan, Neset Acarkan
In this study, it was aimed to produce glass sand with less than 0.15% Fe2O3 for window glass manufacture and glass ware grade with less than 0.05% Fe2O3 from Yalõköy sand dunes having 0.48% Fe2O3. In
Jan 1, 2003
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Iron RoadÆs Prediction of Magnetite Concentrate Production from the Central Eyre Iron ProjectBy P J. Marsh, P J. Bartsch, N J. Semler
Iron Road Limited is currently studying the feasibility of producing 20 Mt/a of high-grade (67 per cent Fe) magnetite concentrate from a 2.6 Bt resource (JORC) located at Warramboo on the central Eyre
Aug 12, 2013