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Recovery Of Mercury From Spent Silver Oxide Button Cells (e9a6e483-a758-4188-a44f-0e705cf6d0aa)By S. Aktas
The present work describes an investigation of a hydrometallurgical process for the recovery of mercury from spent silver oxide button cells. The cell paste was leached in nitric acid to solubilize si
Nov 1, 2011
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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 Bath-Smelting Gases - Thermodynamic ConsiderationsBy Ranklin W. J, Swinbourne D. R
Lead blast furnace slags contain typically 10 - 20 mass per cent Zn. The zinc can be recovered by slag fuming, in which a powdered coal/air mixture is injected into a molten slag bath. Volatilised z
Jan 1, 1993
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Recovery of Metals and Nonmetals from Waste Printed Circuit Boards (PCBs) by Physical Recycling TechniquesBy Muammer Kaya
This paper reviews the existing and state of art knowledge for electronic waste (e-waste) recycling. Electrical/electronic equipments (EEEs) which are unwanted, broken or discarded by their original u
Mar 1, 2017
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Recovery of metals from chloride leach solutions of waste of printed circuit boards by adsorption and precipitationBy Arman Ehsani, Ersin Yazici, Haci Deveci
The downstream treatment of chloride leach solutions of WPCB for recovery of base and precious metals by a combination of adsorption and precipitation processes were carried out. A synthetic leach sol
Jan 1, 2014
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Recovery Of Metals From Copper Smelter Furnace Flue DustBy H. H. Law
Large amounts of waste material in the form of flue dust are generated in the operation of copper smelter furnaces. As a result of increasingly stringent disposal, it has become important to develop m
Jan 1, 1992
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Recovery Of Metals From Dilute Aqueous Solutions Using Pulsed ElectrodepositionBy Andrew Wessman
Keywords: Recycling, Electrodeposition, Recovery, Dilute, Dissolved Metal Ions In order to facilitate the recovery of pure metals from solutions containing a mixture of dissolved metal ions, a puls
Jan 1, 2005
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Recovery Of Metals From Dilute Effluent Streams By Biosorption MethodsBy Torma A. E.
Biotechnological processes are considered to be cost effective especially for situations where the recovery of metals from 'Very large volumes containing trace metal concentrations (less than 10
Jan 1, 1992
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Recovery of Metals from Discarded Integrated Circuits "Mining, Metallurgy & Exploration (2020)"By Nikhil Dhawan, Amit Barnwal
The present study reports a processing route to recover metals from integrated circuits of discarded random access memory (RAM) units containing ~ 66% printed circuit boards and ~ 33% integrated circu
Jun 23, 2020
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Recovery of Metals from Electronic Scrap by Hydrometallurgical RouteBy Nikhil Dhawan
Electronic waste (e-waste) is a collective name given to discarded electronic devices such as Television, Cellular Phones and Personal Computers. Among the heterogeneous metals present in the e-waste
Jan 1, 2009
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Recovery of Metals from Electronic Scrap by Hydrometallurgical Route (7395bfea-87e7-4b41-a733-b124f498a1ec)By Manoj Kumar, Vinay Kumar, Nikhil Dhawan, Manish Wadhwa
"Electronic waste (e-waste) is a collective name given to discarded electronic devices such as Television, Cellular Phones and Personal Computers. Among the heterogeneous metals present in the e-waste
Jan 1, 2008
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Recovery Of Metals From Eletroplating Wastes By The Waste-Plus-Waste MethodBy L. C. George
Addition of an acid waste to an alkaline cyanide waste was investigated for five different combinations of electroplating wastes. At the optimum final pH values of the mixtures, metals and cyanides we
Jan 1, 1970
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Recovery of Metals from Shredded Television ScrapBy J. R. Cui
The production of electric and electronic equipment (EEE) is one of the fastest growing areas. This development has resulted in an increase of waste electric and electronic equipment (WEEE). In view o
Jan 1, 2014
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Recovery Of Metals From Solutions - Chemical PrecipitationUS 4,192,852-Precipitation of iron values as a jarosite from a sulfate solution obtained as a byproduct in the hydrometallurgical processing of zinc sulfide ore The solution is cooled, partially neutr
Jan 1, 1982
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Recovery of metals from tailingsBy Häkkinen Antti, Salmimies Riina, Matveinen Maria
"Tailings generated during the upgrading of ore present a major challenge for the mineral processing industry. On one hand, the processing of tailings requires added capital input. On the other hand,
Jan 1, 2014
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Recovery of Metals From WastewaterBy Thomas M. Harris
To avoid the escalating cost of disposal of metals-containing wastewater and residues, new wastewater treatments will focus on the recovery of the metals. A combination of ion exchange and electrowinn
Jan 1, 1992
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Recovery of Minerals from U.S. CoalsBy Nicholas E. Vanderborgh
Projections show that domestic coal will serve for the majority of energy supplies during the next decades. Thorough chemical cleaning of this coal can be accomplished in long-residence time, slurry-t
Jan 1, 1982
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Recovery of Molybdenum and Rhenium from Sulfide Concentrate by Electro-Oxidation and PrecipitationBy Tsembel Darjaa, Toru H. Okabe, Yoshiaki Umetsu
"With the purpose of extracting molybdenum and rhenium from molybdenum sulfide concentrate; .electrolysis of slurry, solvent extraction and ·precipitation operations were carried out. The slurry of th
Jan 1, 2000