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Recovery Of Iron From Pyrite Cinder By The MTU-Pelletech ProcessBy M. Adnan Göksel
Pyrite cinder is generated by roasting pyrite for sulfur dioxide production. It contains up to 62% iron, but also may contain other hazardous or toxic materials such as Zn, Pb, As, T1, Cd, Cu, Sn and
Jan 1, 1984
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Recovery of Iron from Refractory Iron Ore Using Suspension Magnetization Roasting Followed By Magnetic SeparationBy Y. S. Sun, P. Gao
"In this investigation, a pilot-scale suspension magnetization roasting reactor was introduced and used to enhance magnetic properties of an iron ore. Consequently, the effects of roasting temperature
Jan 1, 2018
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Recovery of Iron from Tailings with Fluidized Magnetization Roasting Followed By Magnetic SepatationBy Yuexin Han, Jie Liu, Shuai Yuan, Yanjun Li
"In order to improve recovery efficiency of iron minerals from iron ore tailings and to reduce its connected environmental pollution, this article investigated the reducing roasting of iron ore tailin
Jan 1, 2018
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Recovery of Iron Ore Fines and Ultrafines from Tailings by Using Wet High-intensity Magnetic Separation – JONES WHIMSBy M Gerards, M Steinberg, T Graham
The quality and quantity of Australia’s secondary deposits, which include tailings streams and tailings dams, are higher than most countries’ primary deposits. In addition, these secondary deposits ha
Jul 13, 2015
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Recovery of Lanthanides from Apatite PhosphogypsumBy Cz. Mora, A. Pawelczyk, D. Hreniak, P. Nowak, A. Dyonizy, S. Strek, W. Strek, K. Grabas, A. Ostrowski
Globalization and a growing demand for limited raw material resources have forced changes in the approach to the supply chain. This is particularly true in the case of rare earths, which are regarded
Jan 1, 2014
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Recovery Of Lead From Lead Blast Furnace SlagsBy J. L. Watson
n the U.S., lead has been produced via blast furnace processing for over a century, and the slags from that pyro-metallurgical process have been accumulating on industrial sites over that extended per
Jan 1, 1995
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Recovery of Lead from Process SolutionsBy M. K. Mohan
Lead recovery from process solutions contributes not only to the conservation of resources but also clean environment. Zeolites are natural aluminosilicates, which finds applications as catalysts and
Jan 1, 1999
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Recovery of Lead, Silver and Gold From Zinc Process Residues by a Sulfidization-Flotation MethodBy J. Rastas
The recovery of lead, silver and gold from existing and potential zinc process residues using a sulfidization-flotation method was investigated on a laboratory scale. The following residues were teste
Jan 1, 1990
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Recovery of Lithium from the Great Salt Lake BrineBy Rajashekhar Marthi
Lithium is a key component for future electric vehicle batteries and energy storage. The future availability of lithium to meet the growing demands remains in question. Around 60% of lithium resources
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Recovery of Low-Grade Waste Heat from Smelter Process Water Streams Using Heat PumpsBy G. M. Ross, I. M. Ross, J. A. Scott
"The otherwise waste heat in many water streams in the mining industry can be used to provide space heating of adjacent infrastructure including laboratories, workshops, and offices. This can be achie
Jan 1, 2016
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Recovery of Magnetite from Spiral Tailings at Labrador CityBy T. C. Murphy, W. Taciuk
In 1966, the Iron Ore Company of Canada commissioned a wet magnetic scavanging plant for the recovery of fine magnetite values p.resent in spiral tailings discharged from a spiral gravity separation p
Jan 1, 1972
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Recovery Of Manganese From Solution Obtained By Bioleaching Three Kids OreBy S. N. McIntosh
Column bioleaching was evaluated by the U.S. Bureau of Mines as a means of recovering manganese from a low-grade ore from the Three Kids deposit in Southern Nevada. Manganese was solubilized from the
Jan 1, 1993
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Recovery Of Mercury And Lead From Wastewater By Sulfide Precipitation- FlotationBy Ting Liu, Qian Li, Peng Deng
The wastewater containing Hg2+ and Pb2+ does great harm to the environment and human bodies. Traditional wastewater treatment cannot fundamentally put a stop to heavy metals pollution for producing se
Jan 1, 2015
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Recovery of Mercury(II), Zinc (II), Cadmnm(II) and Copper(II) from Effluents of Incineration ProcessesBy H. Braun, T. Kind, K. Gloe, D. B. Dreisinger, H. Stephan, O. Heitzsch, G. A. Kordosky
Municipal garbage incineration processes with coupled wet flue gas cleaning systems generate effluents containing toxic heavy metals such as mercury, zinc, cadmium and copper. The separation of these
Jan 1, 1993
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Recovery of Metal Ions from Process Solutions by CementationBy Raj P. Singh
Applications of cementation in the recovery of metal ions from process solutions have been known for a long time. Cementation reactions involve electrochemical precipitation of a noble metal from solu
Jan 1, 2000
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Recovery of Metal Values from Complex Sulphide Concentrates of Copper, Lead and Zinc through Aqueous ChlorinationBy Paramguru R. K, Jena P. K
Increasing demand for copper, lead and zinc with continuous depletion of good grade ore reserves, warrants the need for utilization of lean and complex ores of these metals. There is worldwide effort
Jan 1, 1981
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Recovery Of Metal Values From Copper Slags By Flotation And Roasting With PyriteBy G. Bulut
The recovery of copper and cobalt from ancient copper slags from the Küre region of Turkey was investigated. A fayalitic-type of ancient copper slag containing 1.24% Cu, 0.53% Co and 53.16% Fe were su
Jan 1, 2007
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Recovery of Metallic Values from Feldspar by Mechanical and Thermal Pretreatment Followed by Acid LeachingBy Nikhil Dhawan, Shrey Agrawal
Feldspar, a low-alumina, and abundantly available aluminosilicate source, is explored in this study to extract aluminum and potassium values. The sample comprises lamellar layers of microcline and alb
May 18, 2022
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Recovery of Metallic Zinc from Steelmaking Dusts by the Reduction-Vapour Depositions ProcessThe extinction of zinc from steelmaking dusts has been studied with a laboratory scale reduction-vapour deposition (RVD) process in the absolute pressure and temperature ranges of 13 - 1300 Pa and 1
Jan 1, 1993
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Recovery Of Metals And Acids From Stainless Steel Pickling BathBy H. Reinhardt, P. Haglund, J. Rydberg, B. Lunden
As legislation to minimize pollution in effluent streams becomes stricter, it is important to treat used acid pickling baths before discharge. This is usually achieved by neutralization of the acids a
Jan 1, 1973