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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 Converter Slag by High Temperature Carbon Thermal ReductionBy Zhitong Sui, Feng Zhang, Li Zhang, Tie Ou, Guangqiang Li
Researches on the recovery of iron, manganese and the removal of phosphorus from converter slag were reviewed. The carbon thermal reduction experiments were carried out by induction heating the mixtur
Jan 1, 2004
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Recycling of discarded photovoltaic solar modules for metal recoveryBy Nikhil Dhawan, Shrey Agrawal
India’s most extensive renewable energy expansion program targets 280 GW of solar energy by 2030. Due to the massive generation of photovoltaic waste (expected 34,600 T by 2030), stringent recycling e
Nov 14, 2022
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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 End-of-Life Waste CD/DVD as a Carburizer in Processing of Fe-C AlloysBy R. Khanna, I. Mansuri, S. Devasahayam
"Recycling polymer based end-of-life materials as carbon resources for a partial replacement of coke/coal can make important contributions towards enhancing the environmental sustainability of steelma
Jan 1, 2012
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Recycling of Flat Glass Waste into Clayey CeramicBy Thais Cristina da Costa Caldas, Alline Sardinha Cordeiro Morais, Carlos Maurício Fontes Vieira, Sergio Neves Monteiro
"This work has as its objective to evaluate the firing behavior of a kaolinitic clayey body from Campos dos Goytacazes-RJ incorporated with flat glass waste (FGW) from civil construction. Incorporatio
Jan 1, 2012
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Recycling Of Fluorescent Lamp Glass into Clayey CeramicBy Thais Cristina da Costa Caldas, Carlos Mauricio Fontes Vieira, Alline Sardinha Cordeiro Morais, Sergio Neves Monteiro
"This work has as its objective to evaluate the effect of the incorporation of a glass powder waste obtained from discarded and Hg-cleaned fluorescent lamp into clayey ceramics used to fabricate brick
Jan 1, 2011
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Recycling of Galvanized Steel Scrap Using ChlorinationBy J. K. S. Tee
Using a novel method, zinc has been selectively removed from galvanized steel scrap on a laboratory scale. The separation is based on thermodynamic principles: during chlorination in air-chlorine (10:
Jan 1, 1999
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Recycling of Heat Resistant Magnesium AlloysBy Norbert Hort, Karl Ulrich Kainer, Carsten Blawert, Daniel Fechner
"With the development of new heat resistant magnesium alloys, the automotive industry has introduced several parts to the drive train. The rising number of large magnesium components will result in a
Jan 1, 2008
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Recycling of High Quality Steel Scraps Directly in Electroslag Remelting Process (ESR)By Muhlis Nezihi Saridede, Burak Birol
"The scraps of high quality steels generally contain expensive alloying elements such as chromium, vanadium, nickel, etc. These scraps are melted in an induction or an electric arc furnace and refined
Jan 1, 2011
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Recycling of Li-Ion and Li-Solid State Batteries: The Role of HydrometallurgyBy François Larouche
Since their commercialization in the early 1990s, lithium-ion batteries (LIBs) have become ubiquitous for powering a myriad of portable electronics. Their usage now extends to the automotive industry
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Recycling Of Li/soci2 Battery WastesBy Arpad E. Tonna
Recycling of materials from lithium-oxyhalide batteries is a complex task, since the dismantling of batteries is associated with many hazards. The electrolyte and the lithium anode metal are extremely
Jan 1, 1995
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Recycling Of Metallurgical Residues And EffluentsBy Pragna N. H. Bhakta
The minerals industry is under political and economic pressure to reduce its processing wastes and minimize their impact on the environment: Recycling is one of the means by which the minerals Industr
Jan 1, 1992
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Recycling of Mn from Industrial Residue by Electrochemical LeachingBy P. Henry
A novel electrochemical cell has been developed for the recovery of MnO2 from residue of pyrolusite ore leading loaded with Fe, Al Ni, Co and Si impurities, This new process can be considered as an
Jan 1, 2000