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Processing Of Vanadiferous Residues To FerrovanadiumBy R. Ressel
Keywords: ferrovanadium, thermodynamics, phosphorus Recyclable material is rapidly gaining in importance as a source of raw materials in industrialized countries. This is also the case in the produ
Jan 1, 2005
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The Kidd Smelter Start-Up And Early OperationBy R. M. Sweetin
Detailed descriptions by operating area of the Kidd copper smelter are presented, together with accounts of complement staffing, training, and preparation activities for smelter start-up in June 1981.
Jan 1, 1983
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Adsorption and Recovery of Ag(I) from Aqueous Solutions Using Spent GrainBy Qingzhu Li
The brewing industry byproduct, spent grain (SG), was evaluated for its ability to adsorb Ag(I) from aqueous solutions. Ag(I) adsorption was dependent on solution pH, contact time, adsorbent dose, ini
Jan 1, 2009
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Stepwise Hydrochloric Acid Extraction Of Monazite Hydroxides For The Recovery Of Cerium Lean Rare Earths, Cerium, Uranium And ThoriumBy T. V. Swaminathan
Monazite sand is normally processed by, the caustic soda route to produce mixed rare earths chloride, thorium hydroxide and trisodium phosphate. Bulk of the mixed rare earths chloride is used for the
Jan 1, 1989
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Plasma-Assisted Chemical Vapor Synthesis of Tungsten Carbide and Cobalt Nanocomposite PowderBy Taegong Ryu
A thermal plasma process was used to synthesize nanosized tungsten carbide -cobalt composite powder, in which ammonium paratungstate and cobalt oxide were reacted with a gas mixture containing CH4, H2
Jan 1, 2009
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Critical Materials Traceability: More Important Than MetallurgyBy J. R. Goode
Up to one half of neodymium and praseodymium production, key ingredients in permanent magnets, is produced illegally. About 60% of cobalt production, critical in lithium-ion batteries and other applic
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The Processing Of Rare Earth MineralsBy F. F. Aplan
Though over 100 minerals are known to contain the rare earth (RE) or lanthanide elements, only a few provide the bulk of the world's source of these elements. The principal RE-containing mineral,
Jan 1, 1989
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Douglas Centenary Commemoration 1918–2018: Engineering the Science— James Douglas, Early Hydrometallurgy and ChileBy W. William Culver
James Douglas became known in the nineteenth century for two reasons fundamental to his mining career: (1) his experimental work with copper hydrometallurgy, and (2) his grasp of the idea that the qua
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Preliminary Assessment of Mercury Contamination Due to Gold Mining in the Rio Ramis-Lake Titicaca Watershed, PeruBy Christopher Gammons
In developing countries throughout the world, gold ores are being processed by mercury amal-gamation, a technique long banned in the U.S. - unless a retort operation is used for mercury recovery - due
Jan 1, 2003
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Management of Smelter Projects in a Developing CountryBy M. D. Strachan
Technical & Procurement Services Limited (TECHPRO) in Ashford, Kent, UK, have been appointed as Project Managers for the major rehabilitation of the Copper Smelting complex of Nkana Division, Zambia C
Jan 1, 1991
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Arsenic Removal By Electrocoagulation Technology In The Comarca Lagunera MexicoBy José R. Parga
In some parts of the Comarca Lagunera with population of about 2.5 million people, situated in the central part of northern México, chronic arsenic poisoning is endemic and severe adverse effects attr
Jan 1, 2005
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Processing of Grinding Waste of Rhenium-Containing Alloys to Manufacture Commercial-Grade MetalsBy E. I. Gedgagov, A. V. Tarasov, V. M. Paretsky, A. D. Besser
"Hydrometallurgical technology and equipment have been developed in the Gintsvetmet Institute (Moscow, Russia) for processing of rhenium-containing alloys waste to produce commercial- grade metal prod
Jan 1, 2008
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Evolution Of Granulation TechnologyBy Wolfgang Van Hooff
Encouraged by a strongly growing and evolving market for granulated products, Paul Wurth continuously improves its granulation and dewatering technologies to provide customers with state of the art in
Jan 1, 2006
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Recycling System of Waste Materials from Discarded Mobile PhoneBy Kunihiko Takahashi, Gjergj Dodbiba, Hisayoshi Umeda, Toyohisa Fujita
"An increasing number of mobile phones is increasing the number of the discarded mobile phones. Many efforts are thus being made to collect and recycle these devices. This paper is a short introductio
Jan 1, 2008
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Electrolytic Salt Splitting for Sulfuric Acid and Caustic Recovery: Can It Be Cost-Effective?By Alexander Burns
Electrolytic salt splitting is a technology where acid and/or base is regenerated from a neutral salt using membrane electrolysis. Recent advances in the understanding of brine treatment, membrane sta
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Characterization Of Mechanical Properties And Microstructure In Copper Nanopowder Alloyed Al7075 T651 Via Friction Stir ProcessBy Dongok Kim
Regardless of the advantages of the Friction Stir Process (FSP), for age-hardened aluminum alloys, the mechanical properties such as hardness in the stir zone decreased after FSP due to the growth or
Jan 1, 2006
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Lead Recycling From Battery Scrap And Other Raw Materials In Metaleurop's Lead Smelting Plan In OkerBy Gernot Schenker
With the shut-down in the mid-1970s of the last shaft furnaces in the Harz Smelter Plant the long tradition of the Primary Lead Smelter in Oker came to an end. A continuation of the concern was nevert
Jan 1, 1990
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Anode Casting Operation, Process Improvements And Anode Quality At The Ilo RefineryBy Victor Raul Alarcon
The Ilo Refinery was commissioned in 1975, with a cathode production capacity of 150,000 tpy. In 1994, Southern Perú Copper Corporation (SPCC) purchased the Refinery from Minero Perú SA. Subsequentl
Jan 1, 2005
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An Efficient Method of Stirring Melt With a Modulated Traveling Magnetic FieldBy Xiaodong Wang
A liquid metal flow generated by a magnetic field whose traveling direction is periodically reversed, the Reversed Traveling Magnetic Field (R-TMF) is studied. The modulation frequency ranges from 0 t
Jan 1, 2009
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Blister Flash Smelting - Efficient And Flexible Low-Cost Continuous Copper ProcessBy Jukka Tuominen
The history of making blister copper in an Outokumpu Flash Smelting Furnace dates back to the late 1960?s, when Outokumpu first piloted the Outokumpu Direct Blister (ODB) process. The first commercial
Jan 1, 2005