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Recovery of Precious Metals from Electronic ScrapsBy Roberto Giovanardi, Isabella Lancellotti, Luisa Barbieri, Ercole Soragni, Fernanda Andreola
"Recovery of precious metals (PMs) is a present topic, as they are used almost in every electronicelectric device. Gold is the second PM in order of consumption (following silver) and it is almost ubi
Jan 1, 2008
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Recovery Of Rare Earth Elements From Ndfeb Magnet Scraps By Pyrometallurgical ProcessesBy Shuqiang Guo, Xionggang Lu, Yuyang Bian, Weizhong Ding, Lan Jiang, Kai Tang, Changyuan Lu
For recovery of rare earth elements from the NdFeB based permanent magnet scraps, a high temperature process was used. Permanent magnets scraps were firstly oxidized in air. The optimal oxidation cond
Jan 1, 2015
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Recovery Of Rare Earth Metals (Rems) From Primary And Secondary Resources: A ReviewBy Vinay Kumar, Manis Kumar Jha, J. Rajesh Kumar, Archana Kumari, Rekha Panda, Jin Young Lee
Rare earth metals (REMs) play a significant role in the manufacture of permanent magnets, fluorescent lamps, catalysts, medicines, super alloys etc. Recently, China, which controls 97% of world trade
Jan 1, 2014
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Recovery Of Rare Earth Metals From Wasted MagnetBy Tatsuki Uzawa, Takashi Nagai
The consumption of Nd and Dy is increasing dramatically because of an exceptionally high demand for Nd-Fe-B-(Dy) magnets and a significant amount of the magnets are wasted. It is important to develop
Jan 1, 2014
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Recovery Of Rare Earths From Red MudBy Renato G. Bautista
The prospect for recovery of rare earths from red mud, the bauxite tailings from the production of alumina is examined. The Jamaican red mud by far has the higher trace concentrations of lanthanum, ce
Jan 1, 1992
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Recovery Of Rare Metal Indium (In) From Discarded Lcd MonitorsBy Jae-Chun Lee, Jinki Jeong, Manis Kumar Jha, Divika Gupta, Pankaj Kumar Choubey
Rare metal indium (In) is mostly used as electroluminescent material in liquid crystal displays (LCD) monitors. Present paper describes leaching studies for the recovery of In from waste LCD monitors
Jan 1, 2014
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Recovery of Recyclable Materials from Shredder ResidueBy B. J. Jody
Each year, about 11 million tons of metals (ferrous and nonferrous) are recovered in the U.S. from about 10 million discarded automobiles. The recovered metals account for about 75% of the total weigh
Jan 1, 1994
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Recovery of REEs from End-of-Life Permanent Magnet Scrap Generated in WEEE Recycling PlantsBy Sebastiaan Peelman
NdFeB permanent magnets are the best available magnets used in many technology applications. However, at their end-of-life (EoL) most of magnets and the contained REEs are lost during the recycling of
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Recovery of Silver From Residues of the Zinc Jarosite ProcessBy C. S. Ek
As a continuation of previous work, further tests have been carried out to recover silver from the residues obtained in a zinc jarosite process. Selective flotation has been performed with different r
Jan 1, 1990
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Recovery of Silver from the Silver Nitrate System by Hydrogen ReductionBy W. Kunda
Silver nitrate solution is a very common product in hydrometallurgical processes involving the treatment of various silver bearing materials. Silver is recovered by electrolysis. The alternative metho
Jan 1, 1989
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Recovery Of Sodium Hydroxide From Alkaline Waste SolutionsBy David T. Hobbs
Large quantities of highly alkaline, radioactive, liquid wastes are stored in underground tanks throughout the Department of Energy complex. These wastes will be pretreated to separate radionuclides a
Jan 1, 1999
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Recovery Of Some Metallic Compounds From The Fly Ashes Of Some Egyptian Power StationsBy S. S. Ibrahim
The left behind material after the combusion of fossel fuel in some power stations in Cairo; weighing tens of tons every years, was investigated. The material called "Fly Ashes" containing 7.5% Ni, 10
Jan 1, 1995
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Recovery of Specialty Metals, Mainly Germanium and Indium from Zinc Primary SmeltingBy J. M. Demarthe
The recovery of minor metals from zinc concentrates is dependent on the process used for their treatment. The behaviour of gennanium and indium in pyrometallurgical processes such as the Imperial Smel
Jan 1, 1990
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Recovery of Sulfides from Sulfate-Containing Bleed Streams Using a Biological ProcessBy S. Vellinga, G. H. R. Janssen, C. J. N. Buisman, C. F. M. Copini
Non-ferrous metallurgical plants are often confronted with the need to neutralize bleed streams or effluents containing sulfates. The treatment of these streams could produce large amounts of gypsum.
Jan 1, 2000
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Recovery Of Sulphur In Off-Gases From Roasting Of Molybdenum SulphideBy Jens Kristen Laursen
In 1999, Molymex S.A. de C.V. (Molymex), Mexico. (a company wholly owned by Molibdenos y Metales S.A. (Molymet), Chile) decided to install the Haldor Topsrae Wet gas Sulphuric Aicd (WSA) process for c
Jan 1, 2002
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Recovery of Tellurium from Cadmium Telluride Photovoltaic Module Manufacturing Scrap and other SourcesBy Wenming Wang
Recycling of retired cadmium telluride (CdTe) photovoltaic (PV) modules has attracted attention due to new European environmental regulations. Recycling tellurium from CdTe PV modules is becoming more
Jan 1, 2006
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Recovery Of The Chromium (III, VI) From Aqueous Solutions Using Ion Exchange SystemBy J. C. Riani
The release of heavy metals into the environment is increasing among others due to human activities such paint and pigment industries, tanneries, and metal finishing industries. Among metal releases,
Jan 1, 2006
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Recovery Of Titanium From Blast-Furnace Slag: A Pyro-Modification And Beneficiation ApproachBy Zhenglong Li
A process has been developed to recover titanium from a blast-furnace slag which contains about 20-25% Ti02 and 12% Fe. In this process. "hot" slag from the blast furnace is directed to a separate fur
Jan 1, 1996
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Recovery Of Titanium From Waste Solution In TiO2 ProductionBy Junji Shibata
Extraction behavior of Ti(IV) and other metal ions, such as Fe(III), Fe(II), Cu(II), Zn(I1) and Co(I1) from acidic solutions like sulphuric acid and hydrochloric acid was studied in order to recover t
Jan 1, 1994
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Recovery of Tungsten from Spent V2O5–WO3/TiO2 CatalystBy In-Hyeok Choi
Currently, spent V2O5–WO3/TiO2 catalysts contribute significant amounts of solid waste following increasing levels of global demand. V2O5–WO3/ TiO2 catalysts usually consist of TiO2 anatase as a suppo