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Lunar Production of Aluminum, Silicon and OxygenBy Rudolf Keller
"EMEC Consultants is developing a process to extract oxygen, aluminum and silicon from lunar anorthositic soil. The process will provide oxygen in space for propulsion, aluminum as a structural materi
Jan 1, 1988
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Recycling Zinc Recovered from Electric Arc Furnace Dust: Is There a Better Way?By Larry M. Southwick
Steel mill electric arc furnace dust is a RCRA listed hazardous waste and its treatment and/or disposal are regulated by a complex set of rules. These regulations were originally established to encour
Jan 1, 1998
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ISASMELT™ Technology for Sulfide SmeltingBy Ben Hogg
Since the development of the top-submerged lance (TSL) technology for copper and lead smelting by the cooperation of Mount Isa Mines (MIM), now owned by Glencore, and the Commonwealth Scientific Indus
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Design For Transients In Gas Handling SystemsBy Chris Twigge-Molecey
As emission constraints for metallurgical plants become more difficult to meet; control of major, multi-vessel, flue systems become more critical. Control instabilities can result in significant loss
Jan 1, 1992
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Modelling and Process Optimization for Functionally Graded MaterialsBy Ravi S. Bellur-Ramaswamy, Daniel A. Tortorelli, Robert Haber, Nahil A. Sobh
We optimize continuous quench process parameters to produce functionally graded aluminum alloy extrudates. To perform this task, an optimization problem is defined and solved using a standard nonlinea
Jan 1, 2001
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A Study on the Effect of Crystal Habit Modifiers on the Co-precipitation of REE with GypsumBy Zhi Yang, Ahmad Ghahreman, Farzaneh Sadri
Impurity removal is a very important stage of the hydrometallurgical treatment of rare earth elements (REE) processing circuit, which is performed after water leaching of the acid baked REE concentrat
Mar 1, 2018
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Inco's New Anode Furnaces And Anode Casting Shop At The Copper Cliff SmelterBy B. Bichel
For the last 70 years, molten blister copper has been transferred by rail in hot metal cars from the Copper Cliff Smelter to the Copper Cliff Copper Refinery (ex Ontario Refining Company) where it was
Jan 1, 2002
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The Role of Electrochemistry at East Penn ManufacturingBy R. A. Spitz, R. Leiby, M. Bricker
Electrochemistry plays a significant role in minimizing wastes at East Penn's secondary lead smelter. East Penn has been recovering spent battery acid for reuse in new batteries since 1992. East Penn
Jan 1, 2000
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Pilot Plant Commissioning and Operations for Copper Sulfide In Situ Indirect BioleachingBy Theodore Ineich
The “BIOMOre” project aims to prove the technical feasibility of indirect in situ bioleaching of sulfide minerals contained in a deep underground deposit, by bringing together the disciplines required
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Removal of Cd(II) Ion from Aqueous Solution by Adsorption on Wasted Low Grade Phosphorus-Containing Iron OreBy Jianguo Yin, Xuejiao Zhou, Xiaoyan Xiang, Wenqiang Yang, Xiaoli Yuan, Juan An, Wentang Xia
Low grade phosphorus-containing iron ore (LGPIO), a raw and wasted industrial solid material was used as an adsorbent to remove Cd(II) ion from wastewater. The effects of initial pH value, adsorptive
Mar 1, 2017
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Mineralogy and Morphology of Roasted Copper Concentrates Produced in Simulated Suspension Smelting ConditionsBy Ari JokiIaakso
Three different sulphidic raw materials were treated in a laboratory scale laminar flow fur-nace simulating suspension smelting conditions. The materials were a pure chalcopyrite concentrate, a high-a
Jan 1, 1989
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Assessment of Lithium Pegmatite Ore Bodies to Determine Their Amenability to Processing for the Extraction of LithiumBy G. Mark Aylmore
Various processes have been developed using a combination of elevated temperature and chemical treatment processing to recover Li from silicate minerals. To facilitate further process development, a c
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In Situ Micro Raman Study of the NO3 − Electrochemical Behavior in Molten NaNO3–KNO3 MixturesBy Zhuo Sheng
We have designed a high-temperature Raman micro-furnace and cell that is suited for the electrochemical process study of the NO3 − in molten NaNO3– KNO3 (fraction of NaNO3 50 wt%) salt. During the cyc
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Calcium Reductants - A Historical ReviewBy B. R. Davis, Neale R. Neelameggham, R. E. Brown
The element Calcium element has a unique place in the production of etals, intermetallics and other compounds. The unusualness arises from the fact that we have several possible reductants – metallic
Jan 1, 2014
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Interaction of Carbonaceous Materials with Liquid Iron-Carbon AlloysBy Marcelo B. Mourao
Interactions of carbonaceous materials with liquid Fe-C melts have been investigated experimentally by determining the volatile yield due to rapid devolatilization (Flash Pyrolysis) and rates of disso
Jan 1, 1992
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A Study On The Characterization Of Nickel Laterites Of Central AnatoliaBy Saeid Pournaderi, Ahmet Geveci, Ender Keskinkilic, Yavuz A. Topkaya
There are mainly three commercial nickel laterites in Turkey: Gordes, Caldag and Sivrihisar. The first two appear in Western Anatolia. The third one, Sivrihisar (Yunusemre) laterites have been found i
Jan 1, 2016
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Making the Right Selection: A Comparative Analysis for the Treatment of Refractory Gold ConcentratesBy Rodney Clary
Building on work completed in earlier papers, the current paper presents a techno-economic evaluation of two recently demonstrated technologies for treatment of arsenic containing refractory gold conc
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Experimental Investigation of Interaction Rates of Iron Oxide Particles with Molten Iron-Carbon-Slag SystemsBy G. G. Krishna Murthy
Several experiments were carried out to simulate the bath smelting reactions where iron oxide particles were dropped on to an iron-carbon bath containing molten CaO-SiO2-Al2O3 slag layer on its surfac
Jan 1, 1993
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The Physical Chemistry of Nickel Laterite Smelting SlagsBy C. P. Broadbent
The process metallurgy of many nickel laterite smelting operations is controlled largely by the physical chemistry of the slag system. Consequently, accurate phase diagram information and physicochemi
Jan 1, 1993
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Titanium Metal: Extraction To ApplicationBy Joseph Gambogi
In 1998, approximately 57,000 tons of titanium metal was consumed in the form of mill products (1). Only about 5% of the 4 million tons of titanium minerals consumed each year is used to produce titan
Nov 26, 1999