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Recycling Dry and Alkaline Batteries Using Mining OperationsBy Denise Corrêa de Oliveira
Household zinc based batteries, dry and alkaline, has become the most popular sources of electrical energy, and are widely used. Because of their heavy metals content such as mercury, zinc and mangane
Jan 1, 2001
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Recycling EAF Dust with Contop® TechnologyBy J. Pesl, U. Kemey, F. Sauert
"The CONTOP® smelting cyclone is a water-cooled, upright, high-intensity smelting reactor. The technology for the reactor was initially developed and brought into industrial-scale operation in the are
Jan 1, 2000
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Recycling for Recovery of Critical Metals from LiCoO2 Cathode Material Through Methanesulfonic Acid‑Citric Acid Organic Leaching System - Mining, Metallurgy & Exploration (2023)By Jaeheon Lee, Jai‑Won Byeon, Junmo Ahn, Jun‑Jae Lee, Eun‑Woo Kim, Yoo‑Jin Kim, Jiajia Wu, Jae‑Yeon Kim
Growing demand for valuable battery materials and environmental issues from battery disposal make the recycling of spent lithium-ion batteries (LIBs) essential. Specifically, the green approaches usin
Sep 20, 2023
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Recycling Lead and Cadmium, as well as Zinc, from .EAF DustBy S. E. James
EAF dust has been listed as a "hazardous waste" due to the presence of lead and cadmium, and at times chromium. The 550,00 tpy production of . .EA]' dust, estimated for the United States alone, c
Jan 1, 1990
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Recycling Low Grade Waste Heat to ElectricityBy N. Razavinia
Most mining and metallurgical industries produce relatively large quantities of low grade waste heat which they vent, for the most part, to the environment. To date, little is being done to recover so
Aug 1, 2013
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Recycling Metal-Bearing Hazardous WasteBy V. Ramachandran
Under the Resource Conservation and Recovery ACT (RCRA), generators of listed or characteristic hazardous wastes must find satisfactory means for disposal. of wastes. Initially, for many this meant la
Jan 1, 1994
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Recycling Metals Using the MOCVD ProcessBy Mick O'Meara
Metal Organic Chemical Vapour Deposition (MOCVD) is used in the production of computer circuit boards and metal shapes in nickel, gold, copper, cobalt, etc. All varieties of .MOCVD use the decompositi
Jan 1, 2000
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Recycling Milling Water In Missouri's New Lead BeltBy Franklin H. Sharp, Kenneth L. Clifford
During the last few years the New Lead Belt of Southeastern Missouri has become the main source of lead in the United States. It also produces significant amounts of zinc, copper and silver. The mines
Jan 7, 1973
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Recycling Nickel, Chromium And Iron Catalysts Through The High Temperature Metals Recovery ProcessBy R. H. Hanewald
INMETCO, a subsidiary of Inco Limited, is the only facility in North America that provides High Temperature Metals Recovery for nickel-, chromium-, and iron-bearing wastes. Since 1978, this process ha
Jan 1, 1995
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Recycling of Aluminum Alloy by Direct Convertion Method of Cutting Chips and its Mechanical PropertiesBy H. Mindivan
In the present study, the feasibility of recycling AA6061 Al alloy chips by a combination of ciyomilling, cold compaction and hot extrusion processes was investigated. Furthermore, the effect of Al po
Jan 1, 2011
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Recycling Of Base Metals From Metal Wastes Of Brass FoundriesBy Carl C. Nesbitt
A process has been developed to recover and recycle metals from wastes of brass foundries which contain copper, zinc and lead in various quantities. Tests were conducted to evaluate several leachants,
Jan 1, 1995
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Recycling of cadmium from domestic, sealed NiCd battery waste by use of chlorinationBy A Cox
It has been demonstrated that all the cadmium from spent batteries, typically 4 g per battery, can be recovered by burning polyvinyl chloride waste to yield hydrogen chloride; this reacts to produce
Jun 21, 1905
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Recycling Of Ceramic Particulate Reinforced Aluminium Metal Matrix CompositesBy S. C. Sharma
The aluminium matrix composites with ceramic dispersoids can be separated by density difference concept. In the proposed work composite scrap is recycled using an oil fired furnace. The scrap is melte
Jan 1, 1995
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Recycling of Contaminated Superalloy Scrap via Electrochemical ProcessingBy L. J. Lutz
The U.S. Bureau of Mines has developed an electrorefining process to recover Ni, Co, Cr, and other metals from mixed and contaminated superalloy scrap. The superalloy scrap is cleaned then directly el
Jan 1, 1993
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Recycling Of EAF Dust By Using Top Submerged Lance TechnologyBy Yong Hack Lee
Electric Arc Furnace (EAF) dust is generated when scraps are treated in the electric arc furnace and usually classified as hazardous industrial waste in most countries. EAF dust usually contains 15 to
Jan 1, 2006
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Recycling of EAF Dust Through Source SeparationBy Naiyang Ma
Along with fast growth of EAF steelmaking, better ways of treating EAF dust have been continuously pursued for better environmental protection and better economic benefits. In this contribution, vario
Mar 1, 2018
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Recycling of Electric Arc Furnace Dust in Iron Ore SinteringBy V. B. Telles, D. C. R. Espinosa, J. A. S. Tenório
"The purpose of this work was to study the reutilization of the steelmaking dust, derived from steel production in the electric arc furnace (EAF), in iron ore sintering process aiming zinc elimination
Jan 1, 2012
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Recycling of Electronic Wastes: Degradation and CombustionBy Lifeng Zhang
Printed circuited boards contain considerable quantities of valuable metal, while also containing many environmental pollutants making them unsuitable for landfill. In this study the decomposition of
Jan 1, 2008
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Recycling of Eletric Arc Furnace Dust: Evaluation of the Iron Metal Incorporation in Hot Metal BathBy Jorge Alberto Soares Tenório, Victor Bridi Telles, Denise Crocce Romano Espinosa, Felipe Fardin Grillo, Vicente de Paulo Ferreira Marques Sobrinho, José Roberto de Oliveira
"This research aims to study the process of incorporation of the metal iron in electric arc furnace dust (EAFD), from a steel mill producing long steel by liquid iron in addition to the changing tempe
Jan 1, 2012
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Recycling of Fines of Manganese OresBy R. C. Nascimento
It was investigated the effect of the addition of bentonite on the physical propertiesof pellets produced from fines of manganese ores. Cold-bonded pellets were produced. Pellets bearing up to 1 wt% o
Jan 1, 1995