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Recovery of Copper from Printed Circuit Boards Using Ammoniacal Alkaline SolutionBy M. Tanaka, T. Oishi, K. Koyama, S. Alam
"A novel hydrometallurgical process for copper recovery from waste printed circuit boards has been proposed, which consists of selective leaching of copper metal as Cu(I) by Cu(II) in ammoniacal alkal
Jan 1, 2012
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Recovery of Copper from Printed Circuit Boards Waste by BioleachingBy Jorge Alberto Soares Tenório, Denise Crocce Romano Espinosa, Luciana Harue Yamane
"The present work investigated the influence of Fe+2 initial concentrations in the bioleaching of copper from printed circuit board using Acidithiobacillus ferrooxidans-LR. Printed circuit boards were
Jan 1, 2011
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Recovery of Copper from Refractory Furnace-Lining Bricks by Segregation RoastingBy Moresby J. F
Segregation roasting was used to recover more than 85 per cent of copper from crushed, minus 14 mesh refractory furnace-lining bricks. A plus 14 mesh fraction: which was high in copper, could be recyc
Jan 1, 1978
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Recovery of Copper from Reverberatory Copper Slag and Production of a Leach Residue used as a Portland Cement AdditiveBy T. A. Muhlare
"Large quantities of slag are produced every year and dumped on slag heaps around the world, posing a potential environmental threat due to contained heavy metals content. Slags are waste minerals pro
Jan 1, 2015
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Recovery Of Copper From Slow Cooled Ausmelt Furnace Slag By FloatationBy Qingwei Qin, Ping Xue, Guangqiang Li
Ausmelt furnace slag contains about 0.9% Cu (mass %). With increasing the amount of Ausmelt furnace slag, the recovery of copper from it will produce an enormous economic yield. The recovery of copper
Jan 1, 2015
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Recovery of Copper From Waste Printed Circuit BoardBy X. Wen, D. Tao, B. Li
A high effective method using a hammer mill, a column pneumatic separator and an electrostatic separator was studied for recycling copper from waste printed circuit board. The factors influencing the
Jan 1, 2003
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Recovery Of Copper From Weak Acid By Cementation ProcessBy A. Elizabet Serna
The weak acid is a by product obtained in a pre-treatment of gases from a copper smelter prior to sulfuric acid manufacture and the main components of this weak acid are: sulfuric acid. copper, arseni
Jan 1, 1996
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Recovery Of Copper From White Pine Reverberatory Furnace SlagBy D. M. Thayer
Laboratory and pilot plant investigations have indicated that copper recoveries of 50% can be achieved with fine grinding and flotation of a copper reverberatory furnace slag, Microscopic and microp
Jan 1, 1969
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Recovery of Copper Nanoparticles from AMD by Cementation with Iron and SDSBy G. Granata
In this work, we studied the recovery of copper from AMD by cementation with iron powder. To control the size of copper particles within the nanoscale range, we tested the use of the anionic surfactan
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Recovery of Copper Oxide Minerals by Sulfidization FlotationBy N. N. Manu
In the Central African Copper Belt, sulfidization flotation is the standard practice for dolomitic copper oxide ores. It is a delicate process, and its plant application requires close control of the
Jan 1, 1994
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Recovery of Copper. Cobalt and Nickel from Divrigi Sulfide ConcentratesBy E. Açma
Sivas-Divrigi flotation plant has a capacity of 90,000 tpy. Beneficiation of the tailings of iron ore magnetic separator seems to be attractive, because of its Cu, Co, and Ni contents. In the experime
Jan 1, 1993
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Recovery Of Cr During Smelting Treatment Of Stainless Steel DustBy Xinlei Jia, Wenming Guo, Yanling Zhang
A large amount of stainless steel dust rich in Fe, Cr, and Ni has been being generated in China. Smelting treatment is accepted as a practical method for the recovery/reutilization of these second res
Jan 1, 2015
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Recovery of Critical Rare Earth Elements for Green Energy TechnologiesBy Jyothi Rajesh Kumar, Jin-Young Lee
21st century is electronic revolution in human lives as well as energy is one of the most significant tasks. Rare earth elements (REEs) occupy a key role in daily life as well as high-tech industrial
Mar 1, 2017
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Recovery Of Cyanide From Mill TailingsBy Brian Burdett, Terry I. Mudder, Robert T. Richins, James A. Stevenson, Michael M. Botz, Alan L. Wilder
The first Cyanisorb process was constructed in 1991 at the Golden Cross Mine in Waihi, New Zealand to recover cyanide from CIL tailings. The Golden Cross operation consists of an open-pit and undergro
Jan 1, 1995
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Recovery Of Dilute Metal Ions By Biosorption On River Algae And Its ComponentBy Toyohisa Fujita, Mitsuo Mamiya, W. Tai Yen, Hiroki Kogita
Green algae taken from an acidic mine drainage and blue-green algae taken from an alkaline hot spring stream were collected and tested for their ability to recover or remove dilute metal ions. Experim
Jan 1, 1995
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Recovery Of Direct Reduced Iron From Blast Furnace DustBy Amir Rehmat
The Institute of Gas Technology has developed a fluidized-bed process for recovering direct reduced iron from blast furnace flue dust a material currently considered to be a waste from the iron and st
Jan 1, 1996
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Recovery Of Duricrust Sterilized Heavy Mineral Resources At The Namakwa Sands Mine South Africa: A Geometallurgical ChallengeNamakwa Sands, an Anglo Operations Limited subsidiary, is a world-class producer of heavy minerals. A layer of duricrust imposes a pseudo-stratigraphy to the primary deposit and has sterilized part of
Jan 1, 2007
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Recovery of Dysprosium and Neodymium from Permanent Magnet Scraps Leach Liquors by Environmentally Friendly Hydrometallurgical RoutesBy Ho-Sung Yoon, Jyothi Rajesh Kumar, Chul-Joo Kim, Sung-Don Kim
A recovery process for rare earths (REs) such as dysprosium and neodymium from the leach liquor of permanent magnet scrap (PMS) was developed. The two hydrometallurgical routes namely liquid-liquid ex
Jan 1, 2015
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Recovery Of Economic Values From Backfill Prior To Placement.By C. J. Van Niekerk
When gold plant residues are cycloned for producing a coarse product for backfilling the gold and uranium values are upgraded in the backfill product. Gravity concentration, wet high intensity magneti
Jan 1, 1988
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Recovery Of Elemental Sulfur From Its ChloridesBy E. Allain
Extraction of basic metals from sulfides by conventional pyrometallurgical processing leads to the emission of SO2. To avoid this inconvenient, low temperature selective chlorination of sulfide concen
Jan 1, 1998